product summary
company name :
Developmental Studies Hybridoma Bank
product type :
antibody
product name :
Keratin, type I; cytokeratin 19
catalog :
TROMA-III
clonality :
monoclonal
host :
rat
conjugate :
nonconjugated
clone name :
TROMA-III
reactivity :
human, mouse, rat
application :
western blot, immunohistochemistry, immunocytochemistry, immunoprecipitation, FACS, immunohistochemistry - paraffin section, immunohistochemistry - frozen section
citations: 202
Published Application/Species/Sample/DilutionReference
  • immunohistochemistry - paraffin section; mouse; 1:10; loading ...; fig s9d
Hu S, Liu S, Bian Y, Poddar M, Singh S, Cao C, et al. Single-cell spatial transcriptomics reveals a dynamic control of metabolic zonation and liver regeneration by endothelial cell Wnt2 and Wnt9b. Cell Rep Med. 2022;3:100754 pubmed publisher
  • immunohistochemistry - frozen section; mouse; loading ...; fig 4b
Mancinelli R, Ceci L, Kennedy L, Francis H, Meadows V, Chen L, et al. The Effects of Taurocholic Acid on Biliary Damage and Liver Fibrosis Are Mediated by Calcitonin-Gene-Related Peptide Signaling. Cells. 2022;11: pubmed publisher
  • immunohistochemistry - paraffin section; mouse; 1:100; loading ...; fig 2f
Liu Y, Deguchi Y, Wei D, Liu F, Moussalli M, Deguchi E, et al. Rapid acceleration of KRAS-mutant pancreatic carcinogenesis via remodeling of tumor immune microenvironment by PPARδ. Nat Commun. 2022;13:2665 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; loading ...; fig 5b
Kidger A, Saville M, Rushworth L, Davidson J, Stellzig J, Ono M, et al. Suppression of mutant Kirsten-RAS (KRASG12D)-driven pancreatic carcinogenesis by dual-specificity MAP kinase phosphatases 5 and 6. Oncogene. 2022;41:2811-2823 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; 1:500; loading ...; fig 1b
  • immunocytochemistry; mouse; fig 2h
Pantasis S, Friemel J, Brütsch S, Hu Z, Krautbauer S, Liebisch G, et al. Vertebrate lonesome kinase modulates the hepatocyte secretome to prevent perivascular liver fibrosis and inflammation. J Cell Sci. 2022;135: pubmed publisher
  • immunohistochemistry; mouse; loading ...; fig 1j
Molina L, Zhu J, Li Q, Pradhan Sundd T, Krutsenko Y, Sayed K, et al. Compensatory hepatic adaptation accompanies permanent absence of intrahepatic biliary network due to YAP1 loss in liver progenitors. Cell Rep. 2021;36:109310 pubmed publisher
  • immunohistochemistry; human; loading ...; fig 4g
Pocaterra A, Scattolin G, Romani P, Ament C, Ribback S, Chen X, et al. Fascin1 empowers YAP mechanotransduction and promotes cholangiocarcinoma development. Commun Biol. 2021;4:763 pubmed publisher
  • immunocytochemistry; mouse; fig 7d
  • immunohistochemistry; mouse; 1:100; fig 6i
Kemp S, Carpenter E, Steele N, Donahue K, Nwosu Z, Pacheco A, et al. Apolipoprotein E Promotes Immune Suppression in Pancreatic Cancer through NF-κB-Mediated Production of CXCL1. Cancer Res. 2021;81:4305-4318 pubmed publisher
  • immunohistochemistry; mouse; loading ...; fig 1b
Flowers B, Xu H, Mulligan A, Hanson K, Seoane J, Vogel H, et al. Cell of Origin Influences Pancreatic Cancer Subtype. Cancer Discov. 2021;11:660-677 pubmed publisher
  • immunohistochemistry; human; loading ...; fig 5f
  • immunohistochemistry; mouse; loading ...; fig 5f
Hendley A, Rao A, Leonhardt L, Ashe S, Smith J, Giacometti S, et al. Single-cell transcriptome analysis defines heterogeneity of the murine pancreatic ductal tree. elife. 2021;10: pubmed publisher
  • immunohistochemistry - paraffin section; mouse; 1:1000; loading ...; fig 1f
Hsieh M, Weng C, Lin Y, Wu C, Chen L, Cheng K. Inhibition of β-Catenin Activity Abolishes LKB1 Loss-Driven Pancreatic Cystadenoma in Mice. Int J Mol Sci. 2021;22: pubmed publisher
  • immunohistochemistry - paraffin section; mouse; loading ...; fig s5
  • western blot; mouse; fig 4c
Krausová A, Buresova P, Sarnova L, Oyman Eyrilmez G, Skarda J, Wohl P, et al. Plectin ensures intestinal epithelial integrity and protects colon against colitis. Mucosal Immunol. 2021;14:691-702 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; 1:50; loading ...; fig 2b
Hankeova S, Salplachta J, Zikmund T, Kavkova M, Van Hul N, Brinek A, et al. DUCT reveals architectural mechanisms contributing to bile duct recovery in a mouse model for Alagille syndrome. elife. 2021;10: pubmed publisher
  • immunohistochemistry - frozen section; human; 1:100; loading ...; fig s12b
  • immunocytochemistry; human; 1:100; loading ...; fig 1c
Sampaziotis F, Muraro D, Tysoe O, Sawiak S, Beach T, Godfrey E, et al. Cholangiocyte organoids can repair bile ducts after transplantation in the human liver. Science. 2021;371:839-846 pubmed publisher
  • immunocytochemistry; mouse; 1:200; loading ...; fig s3d
Prior N, Hindley C, Rost F, Meléndez E, Lau W, Gottgens B, et al. Lgr5+ stem and progenitor cells reside at the apex of a heterogeneous embryonic hepatoblast pool. Development. 2019;146: pubmed publisher
  • immunohistochemistry - paraffin section; mouse; loading ...; fig 1d
  • western blot; mouse; loading ...; fig 4c
Krishna Subramanian S, Singer S, Armaka M, Banales J, Hölzer K, Schirmacher P, et al. RIPK1 and death receptor signaling drive biliary damage and early liver tumorigenesis in mice with chronic hepatobiliary injury. Cell Death Differ. 2019;: pubmed publisher
  • immunohistochemistry - paraffin section; mouse; 1:3; loading ...; fig 5c
Gorth D, Shapiro I, Risbud M. Transgenic mice overexpressing human TNF-α experience early onset spontaneous intervertebral disc herniation in the absence of overt degeneration. Cell Death Dis. 2018;10:7 pubmed publisher
  • immunohistochemistry; mouse; loading ...; fig 3b
He P, Yang J, Yang V, Bialkowska A. Krüppel-like Factor 5, Increased in Pancreatic Ductal Adenocarcinoma, Promotes Proliferation, Acinar-to-Ductal Metaplasia, Pancreatic Intraepithelial Neoplasia, and Tumor Growth in Mice. Gastroenterology. 2018;154:1494-1508.e13 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; 1:200; loading ...; fig 1d
Mello S, Valente L, Raj N, Seoane J, Flowers B, McClendon J, et al. A p53 Super-tumor Suppressor Reveals a Tumor Suppressive p53-Ptpn14-Yap Axis in Pancreatic Cancer. Cancer Cell. 2017;32:460-473.e6 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; loading ...; fig s2b
Van T, Polykratis A, Straub B, Kondylis V, Papadopoulou N, Pasparakis M. Kinase-independent functions of RIPK1 regulate hepatocyte survival and liver carcinogenesis. J Clin Invest. 2017;127:2662-2677 pubmed publisher
  • immunohistochemistry - frozen section; mouse; loading ...; fig 1b
Daley D, Mani V, Mohan N, Akkad N, Pandian G, Savadkar S, et al. NLRP3 signaling drives macrophage-induced adaptive immune suppression in pancreatic carcinoma. J Exp Med. 2017;214:1711-1724 pubmed publisher
  • immunohistochemistry; mouse; loading ...; fig 1d
Halbrook C, Wen H, Ruggeri J, Takeuchi K, Zhang Y, di Magliano M, et al. Mitogen-activated Protein Kinase Kinase Activity Maintains Acinar-to-Ductal Metaplasia and Is Required for Organ Regeneration in Pancreatitis. Cell Mol Gastroenterol Hepatol. 2017;3:99-118 pubmed publisher
  • immunohistochemistry - frozen section; mouse; 1:100; loading ...; fig 1d
Pu W, Zhang H, Huang X, Tian X, He L, Wang Y, et al. Mfsd2a+ hepatocytes repopulate the liver during injury and regeneration. Nat Commun. 2016;7:13369 pubmed publisher
  • immunohistochemistry; human; loading ...; fig 1b
Li Q, Wang H, Zogopoulos G, Shao Q, Dong K, Lv F, et al. Reg proteins promote acinar-to-ductal metaplasia and act as novel diagnostic and prognostic markers in pancreatic ductal adenocarcinoma. Oncotarget. 2016;7:77838-77853 pubmed publisher
  • immunohistochemistry; mouse; 1:100; loading ...; fig 3d
Zhang Y, Velez Delgado A, Mathew E, Li D, Mendez F, Flannagan K, et al. Myeloid cells are required for PD-1/PD-L1 checkpoint activation and the establishment of an immunosuppressive environment in pancreatic cancer. Gut. 2017;66:124-136 pubmed publisher
  • immunohistochemistry - frozen section; mouse; fig 1
Hintermann E, Bayer M, Ehser J, Aurrand Lions M, Pfeilschifter J, Imhof B, et al. Murine junctional adhesion molecules JAM-B and JAM-C mediate endothelial and stellate cell interactions during hepatic fibrosis. Cell Adh Migr. 2016;10:419-33 pubmed publisher
  • immunocytochemistry; mouse; 1:10; fig 4
Waisbourd Zinman O, Koh H, Tsai S, Lavrut P, Dang C, Zhao X, et al. The toxin biliatresone causes mouse extrahepatic cholangiocyte damage and fibrosis through decreased glutathione and SOX17. Hepatology. 2016;64:880-93 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; loading ...; fig s2c
Seifert L, Werba G, Tiwari S, Giao Ly N, Nguy S, Alothman S, et al. Radiation Therapy Induces Macrophages to Suppress T-Cell Responses Against Pancreatic Tumors in Mice. Gastroenterology. 2016;150:1659-1672.e5 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; 1:100; fig s2
Diersch S, Wirth M, Schneeweis C, Jörs S, Geisler F, Siveke J, et al. Kras(G12D) induces EGFR-MYC cross signaling in murine primary pancreatic ductal epithelial cells. Oncogene. 2016;35:3880-6 pubmed publisher
  • immunocytochemistry; mouse; fig 2
Pajoohesh Ganji A, Pal Ghosh S, Tadvalkar G, Stepp M. K14 + compound niches are present on the mouse cornea early after birth and expand after debridement wounds. Dev Dyn. 2016;245:132-43 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; fig 4
  • immunohistochemistry - paraffin section; human; fig 4
Finkin S, Yuan D, Stein I, Taniguchi K, Weber A, Unger K, et al. Ectopic lymphoid structures function as microniches for tumor progenitor cells in hepatocellular carcinoma. Nat Immunol. 2015;16:1235-44 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; 1:500; fig s5e
Mazur P, Herner A, Mello S, Wirth M, Hausmann S, Sánchez Rivera F, et al. Combined inhibition of BET family proteins and histone deacetylases as a potential epigenetics-based therapy for pancreatic ductal adenocarcinoma. Nat Med. 2015;21:1163-71 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; fig 1
Chiou S, Winters I, Wang J, Naranjo S, Dudgeon C, Tamburini F, et al. Pancreatic cancer modeling using retrograde viral vector delivery and in vivo CRISPR/Cas9-mediated somatic genome editing. Genes Dev. 2015;29:1576-85 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; fig 2
Li X, Tao J, Cigliano A, Sini M, Calderaro J, Azoulay D, et al. Co-activation of PIK3CA and Yap promotes development of hepatocellular and cholangiocellular tumors in mouse and human liver. Oncotarget. 2015;6:10102-15 pubmed
  • immunocytochemistry; human; 1:20
Lee J, Garbe J, Vrba L, Miyano M, Futscher B, Stampfer M, et al. Age and the means of bypassing stasis influence the intrinsic subtype of immortalized human mammary epithelial cells. Front Cell Dev Biol. 2015;3:13 pubmed publisher
  • western blot; mouse; 1:500; fig s3
Wögenstein K, Szabo S, Lunova M, Wiche G, Haybaeck J, Strnad P, et al. Epiplakin deficiency aggravates murine caerulein-induced acute pancreatitis and favors the formation of acinar keratin granules. PLoS ONE. 2014;9:e108323 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; 1:50; fig 2
Morris S, Carter K, Baek J, Koszarek A, Yeh M, Knoblaugh S, et al. TGF-? signaling alters the pattern of liver tumorigenesis induced by Pten inactivation. Oncogene. 2015;34:3273-82 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; fig s2
Ehlken H, Krishna Subramanian S, Ochoa Callejero L, Kondylis V, Nadi N, Straub B, et al. Death receptor-independent FADD signalling triggers hepatitis and hepatocellular carcinoma in mice with liver parenchymal cell-specific NEMO knockout. Cell Death Differ. 2014;21:1721-32 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; 1:400; fig 7
Karaca G, Swiderska Syn M, Xie G, Syn W, Krüger L, Machado M, et al. TWEAK/Fn14 signaling is required for liver regeneration after partial hepatectomy in mice. PLoS ONE. 2014;9:e83987 pubmed publisher
  • immunohistochemistry - paraffin section; rat; 1:750
Chan I, Guy C, Machado M, Wank A, Kadiyala V, Michelotti G, et al. Alcohol activates the hedgehog pathway and induces related procarcinogenic processes in the alcohol-preferring rat model of hepatocarcinogenesis. Alcohol Clin Exp Res. 2014;38:787-800 pubmed publisher
  • immunohistochemistry - paraffin section; mouse
Reichert M, Takano S, von Burstin J, Kim S, Lee J, Ihida Stansbury K, et al. The Prrx1 homeodomain transcription factor plays a central role in pancreatic regeneration and carcinogenesis. Genes Dev. 2013;27:288-300 pubmed publisher
  • immunohistochemistry - paraffin section; mouse; 1:200
Carrasco M, Delgado I, Soria B, Martin F, Rojas A. GATA4 and GATA6 control mouse pancreas organogenesis. J Clin Invest. 2012;122:3504-15 pubmed publisher
Morris J, Yashinskie J, Koche R, Chandwani R, Tian S, Chen C, et al. α-Ketoglutarate links p53 to cell fate during tumour suppression. Nature. 2019;573:595-599 pubmed publisher
Yamaguchi T, Ikehara S, Akimoto Y, Nakanishi H, Kume M, Yamamoto K, et al. TGF-β signaling promotes tube-structure-forming growth in pancreatic duct adenocarcinoma. Sci Rep. 2019;9:11247 pubmed publisher
Liu Y, Kim H, Dong E, Dong C, Huang M, Liu Y, et al. Sesn3 deficiency promotes carcinogen-induced hepatocellular carcinoma via regulation of the hedgehog pathway. Biochim Biophys Acta Mol Basis Dis. 2019;1865:2685-2693 pubmed publisher
Mohanty S, Pinelli R, Pricop P, Albert T, Dahia C. Chondrocyte-like nested cells in the aged intervertebral disc are late-stage nucleus pulposus cells. Aging Cell. 2019;18:e13006 pubmed publisher
Perkhofer L, Engler M, Gout J, Arnold F, Morawe M, Breunig M, et al. Pancreatic Ductal Organoids React Kras Dependent to the Removal of Tumor Suppressive Roadblocks. Stem Cells Int. 2019;2019:2079742 pubmed publisher
Pocaterra A, Santinon G, Romani P, Brian I, Dimitracopoulos A, Ghisleni A, et al. F-actin dynamics regulates mammalian organ growth and cell fate maintenance. J Hepatol. 2019;71:130-142 pubmed publisher
Debray D, El Mourabit H, Merabtene F, Brot L, Ulveling D, Chretien Y, et al. Diet-Induced Dysbiosis and Genetic Background Synergize With Cystic Fibrosis Transmembrane Conductance Regulator Deficiency to Promote Cholangiopathy in Mice. Hepatol Commun. 2018;2:1533-1549 pubmed publisher
Rubio Tomás T, Aguilar Bravo B, Sancho Bru P. Genetic Lineage Tracing of Biliary Epithelial Cells. Methods Mol Biol. 2019;1905:45-57 pubmed publisher
Goehrig D, Nigri J, Samain R, Wu Z, Cappello P, Gabiane G, et al. Stromal protein βig-h3 reprogrammes tumour microenvironment in pancreatic cancer. Gut. 2019;68:693-707 pubmed publisher
Zhang R, Zeng X, Lin Z, Ming Fu -, Tong Y, Lui V, et al. Downregulation of Hes1 expression in experimental biliary atresia and its effects on bile duct structure. World J Gastroenterol. 2018;24:3260-3272 pubmed publisher
Livshits G, Alonso Curbelo D, Morris J, Koche R, Saborowski M, Wilkinson J, et al. Arid1a restrains Kras-dependent changes in acinar cell identity. elife. 2018;7: pubmed publisher
Zubeldia Plazaola A, Recalde Percaz L, Moragas N, Alcaraz M, Chen X, Mancino M, et al. Glucocorticoids promote transition of ductal carcinoma in situ to invasive ductal carcinoma by inducing myoepithelial cell apoptosis. Breast Cancer Res. 2018;20:65 pubmed publisher
Pelissier Vatter F, Schapiro D, Chang H, Borowsky A, Lee J, Parvin B, et al. High-Dimensional Phenotyping Identifies Age-Emergent Cells in Human Mammary Epithelia. Cell Rep. 2018;23:1205-1219 pubmed publisher
Silagi E, Batista P, Shapiro I, Risbud M. Expression of Carbonic Anhydrase III, a Nucleus Pulposus Phenotypic Marker, is Hypoxia-responsive and Confers Protection from Oxidative Stress-induced Cell Death. Sci Rep. 2018;8:4856 pubmed publisher
Hernandez C, Huebener P, Pradere J, Antoine D, Friedman R, Schwabe R. HMGB1 links chronic liver injury to progenitor responses and hepatocarcinogenesis. J Clin Invest. 2018;128:2436-2451 pubmed publisher
Morell C, Fiorotto R, Meroni M, Raizner A, Torsello B, Cadamuro M, et al. Notch signaling and progenitor/ductular reaction in steatohepatitis. PLoS ONE. 2017;12:e0187384 pubmed publisher
Gonzalez Rodriguez A, Valdecantos M, Rada P, Addante A, Barahona I, Rey E, et al. Dual role of protein tyrosine phosphatase 1B in the progression and reversion of non-alcoholic steatohepatitis. Mol Metab. 2018;7:132-146 pubmed publisher
Ferreira R, Sancho R, Messal H, Nye E, Spencer Dene B, Stone R, et al. Duct- and Acinar-Derived Pancreatic Ductal Adenocarcinomas Show Distinct Tumor Progression and Marker Expression. Cell Rep. 2017;21:966-978 pubmed publisher
Chen F, Lee A, Ge S, Nathan S, Knox S, McNamara N. Aire-deficient mice provide a model of corneal and lacrimal gland neuropathy in Sjögren's syndrome. PLoS ONE. 2017;12:e0184916 pubmed publisher
Lavoie E, Fausther M, Goree J, Dranoff J. The Cholangiocyte Adenosine-IL-6 Axis Regulates Survival During Biliary Cirrhosis. Gene Expr. 2017;17:327-340 pubmed publisher
Tu Q, Hao J, Zhou X, Yan L, Dai H, Sun B, et al. CDKN2B deletion is essential for pancreatic cancer development instead of unmeaningful co-deletion due to juxtaposition to CDKN2A. Oncogene. 2018;37:128-138 pubmed publisher
Zhao M, Rabieifar P, Costa T, Zhuang T, Minden A, Lohr M, et al. Pdx1-Cre-driven conditional gene depletion suggests PAK4 as dispensable for mouse pancreas development. Sci Rep. 2017;7:7031 pubmed publisher
Emmerson E, May A, Nathan S, Cruz Pacheco N, Lizama C, Maliskova L, et al. SOX2 regulates acinar cell development in the salivary gland. elife. 2017;6: pubmed publisher
Wu N, Nguyen Q, Wan Y, Zhou T, Venter J, Frampton G, et al. The Hippo signaling functions through the Notch signaling to regulate intrahepatic bile duct development in mammals. Lab Invest. 2017;97:843-853 pubmed publisher
Naiman N, Fujioka K, Fujino M, Valerius M, Potter S, McMahon A, et al. Repression of Interstitial Identity in Nephron Progenitor Cells by Pax2 Establishes the Nephron-Interstitium Boundary during Kidney Development. Dev Cell. 2017;41:349-365.e3 pubmed publisher
ElMokh O, Ruffieux Daidié D, Roelli M, Stooss A, Phillips W, Gertsch J, et al. Combined MEK and Pi3'-kinase inhibition reveals synergy in targeting thyroid cancer in vitro and in vivo. Oncotarget. 2017;8:24604-24620 pubmed publisher
Rókusz A, Veres D, Szücs A, Bugyik E, Mózes M, Paku S, et al. Ductular reaction correlates with fibrogenesis but does not contribute to liver regeneration in experimental fibrosis models. PLoS ONE. 2017;12:e0176518 pubmed publisher
Yagai T, Matsui S, Harada K, Inagaki F, Saijou E, Miura Y, et al. Expression and localization of sterile alpha motif domain containing 5 is associated with cell type and malignancy of biliary tree. PLoS ONE. 2017;12:e0175355 pubmed publisher
Wang Y, Huang X, He L, Pu W, Li Y, Liu Q, et al. Genetic tracing of hepatocytes in liver homeostasis, injury, and regeneration. J Biol Chem. 2017;292:8594-8604 pubmed publisher
Ohlund D, Handly Santana A, Biffi G, Elyada E, Almeida A, Ponz Sarvisé M, et al. Distinct populations of inflammatory fibroblasts and myofibroblasts in pancreatic cancer. J Exp Med. 2017;214:579-596 pubmed publisher
Coate K, Hernandez G, Thorne C, Sun S, Le T, Vale K, et al. FGF21 Is an Exocrine Pancreas Secretagogue. Cell Metab. 2017;25:472-480 pubmed publisher
Maroni L, Agostinelli L, Saccomanno S, Pinto C, Giordano D, Rychlicki C, et al. Nlrp3 Activation Induces Il-18 Synthesis and Affects the Epithelial Barrier Function in Reactive Cholangiocytes. Am J Pathol. 2017;187:366-376 pubmed publisher
Lemberger U, Fuchs C, Karer M, Haas S, Stojakovic T, Schöfer C, et al. Hepatocyte specific expression of an oncogenic variant of β-catenin results in cholestatic liver disease. Oncotarget. 2016;7:86985-86998 pubmed publisher
Verhulst S, Best J, Syn W, Reynaert H, Hellemans K, Canbay A, et al. Infliximab and Dexamethasone Attenuate the Ductular Reaction in Mice. Sci Rep. 2016;6:36586 pubmed publisher
Kottakis F, Nicolay B, Roumane A, Karnik R, Gu H, Nagle J, et al. LKB1 loss links serine metabolism to DNA methylation and tumorigenesis. Nature. 2016;539:390-395 pubmed publisher
Pitarresi J, Liu X, Sharma S, Cuitino M, Kladney R, Mace T, et al. Stromal ETS2 Regulates Chemokine Production and Immune Cell Recruitment during Acinar-to-Ductal Metaplasia. Neoplasia. 2016;18:541-52 pubmed publisher
Liu X, Pitarresi J, Cuitino M, Kladney R, Woelke S, Sizemore G, et al. Genetic ablation of Smoothened in pancreatic fibroblasts increases acinar-ductal metaplasia. Genes Dev. 2016;30:1943-55 pubmed publisher
Helenius T, Antman C, Asghar M, Nyström J, Toivola D. Keratins Are Altered in Intestinal Disease-Related Stress Responses. Cells. 2016;5: pubmed publisher
Best J, Verhulst S, Syn W, Lagaisse K, Van Hul N, Heindryckx F, et al. Macrophage Depletion Attenuates Extracellular Matrix Deposition and Ductular Reaction in a Mouse Model of Chronic Cholangiopathies. PLoS ONE. 2016;11:e0162286 pubmed publisher
Miyazaki S, Tashiro F, Miyazaki J. Transgenic Expression of a Single Transcription Factor Pdx1 Induces Transdifferentiation of Pancreatic Acinar Cells to Endocrine Cells in Adult Mice. PLoS ONE. 2016;11:e0161190 pubmed publisher
Lee D, Park J, Kim T, Kim S, Kim T, Kim M, et al. LATS-YAP/TAZ controls lineage specification by regulating TGF? signaling and Hnf4? expression during liver development. Nat Commun. 2016;7:11961 pubmed publisher
Thompson M, Cismowski M, Trask A, Lallier S, Graf A, Rogers L, et al. Enhanced Steatosis and Fibrosis in Liver of Adult Offspring Exposed to Maternal High-Fat Diet. Gene Expr. 2016;17:47-59 pubmed publisher
Köhn Gaone J, Dwyer B, Grzelak C, Miller G, Shackel N, Ramm G, et al. Divergent Inflammatory, Fibrogenic, and Liver Progenitor Cell Dynamics in Two Common Mouse Models of Chronic Liver Injury. Am J Pathol. 2016;186:1762-1774 pubmed publisher
Reynoird N, Mazur P, Stellfeld T, Flores N, Lofgren S, Carlson S, et al. Coordination of stress signals by the lysine methyltransferase SMYD2 promotes pancreatic cancer. Genes Dev. 2016;30:772-85 pubmed publisher
Spirli C, Villani A, Mariotti V, Fabris L, Fiorotto R, Strazzabosco M. Posttranslational regulation of polycystin-2 protein expression as a novel mechanism of cholangiocyte reaction and repair from biliary damage. Hepatology. 2015;62:1828-39 pubmed publisher
Font Burgada J, Shalapour S, Ramaswamy S, Hsueh B, Rossell D, Umemura A, et al. Hybrid Periportal Hepatocytes Regenerate the Injured Liver without Giving Rise to Cancer. Cell. 2015;162:766-79 pubmed publisher
Marti P, Stein C, Blumer T, Abraham Y, Dill M, Pikiolek M, et al. YAP promotes proliferation, chemoresistance, and angiogenesis in human cholangiocarcinoma through TEAD transcription factors. Hepatology. 2015;62:1497-510 pubmed publisher
Sawai Y, Kodama Y, Shimizu T, Ota Y, Maruno T, Eso Y, et al. Activation-Induced Cytidine Deaminase Contributes to Pancreatic Tumorigenesis by Inducing Tumor-Related Gene Mutations. Cancer Res. 2015;75:3292-301 pubmed publisher
Zubeldia Plazaola A, Ametller E, Mancino M, Prats de Puig M, López Plana A, Guzmán F, et al. Comparison of methods for the isolation of human breast epithelial and myoepithelial cells. Front Cell Dev Biol. 2015;3:32 pubmed publisher
Asghar M, Silvander J, Helenius T, Lähdeniemi I, Alam C, Fortelius L, et al. The amount of keratins matters for stress protection of the colonic epithelium. PLoS ONE. 2015;10:e0127436 pubmed publisher
Minuth W, Denk L. Detection of abnormal extracellular matrix in the interstitium of regenerating renal tubules. Int J Mol Sci. 2014;15:23240-54 pubmed publisher
Falix F, Weeda V, Labruyere W, Poncy A, de Waart D, Hakvoort T, et al. Hepatic Notch2 deficiency leads to bile duct agenesis perinatally and secondary bile duct formation after weaning. Dev Biol. 2014;396:201-13 pubmed publisher
Wu C, Carpenter E, Takeuchi K, Halbrook C, Peverley L, Bien H, et al. PI3K regulation of RAC1 is required for KRAS-induced pancreatic tumorigenesis in mice. Gastroenterology. 2014;147:1405-16.e7 pubmed publisher
Nedvetsky P, Emmerson E, Finley J, Ettinger A, Cruz Pacheco N, Prochazka J, et al. Parasympathetic innervation regulates tubulogenesis in the developing salivary gland. Dev Cell. 2014;30:449-62 pubmed publisher
Criscimanna A, Coudriet G, Gittes G, Piganelli J, Esni F. Activated macrophages create lineage-specific microenvironments for pancreatic acinar- and ?-cell regeneration in mice. Gastroenterology. 2014;147:1106-18.e11 pubmed publisher
Minuth W, Denk L. Tannic acid label indicates abnormal cell development coinciding with regeneration of renal tubules. BMC Clin Pathol. 2014;14:34 pubmed publisher
Pelissier F, Garbe J, Ananthanarayanan B, Miyano M, Lin C, Jokela T, et al. Age-related dysfunction in mechanotransduction impairs differentiation of human mammary epithelial progenitors. Cell Rep. 2014;7:1926-39 pubmed publisher
Zhang Y, Yan W, Mathew E, Bednar F, Wan S, Collins M, et al. CD4+ T lymphocyte ablation prevents pancreatic carcinogenesis in mice. Cancer Immunol Res. 2014;2:423-35 pubmed publisher
Aksoy I, Giudice V, Delahaye E, Wianny F, Aubry M, Mure M, et al. Klf4 and Klf5 differentially inhibit mesoderm and endoderm differentiation in embryonic stem cells. Nat Commun. 2014;5:3719 pubmed publisher
Davey M, McTeir L, Barrie A, Freem L, Stephen L. Loss of cilia causes embryonic lung hypoplasia, liver fibrosis, and cholestasis in the talpid3 ciliopathy mutant. Organogenesis. 2014;10:177-85 pubmed publisher
Mills L, Zhang L, Marler R, Svingen P, Fernández Barrena M, Dave M, et al. Inactivation of the transcription factor GLI1 accelerates pancreatic cancer progression. J Biol Chem. 2014;289:16516-25 pubmed publisher
Davies C, Harvey E, McMahon R, Finegan K, Connor F, Davis R, et al. Impaired JNK signaling cooperates with KrasG12D expression to accelerate pancreatic ductal adenocarcinoma. Cancer Res. 2014;74:3344-56 pubmed publisher
Rodrigo Torres D, Affò S, Coll M, Morales Ibanez O, Millán C, Blaya D, et al. The biliary epithelium gives rise to liver progenitor cells. Hepatology. 2014;60:1367-77 pubmed publisher
Rielland M, Cantor D, Graveline R, Hajdu C, Mara L, Diaz B, et al. Senescence-associated SIN3B promotes inflammation and pancreatic cancer progression. J Clin Invest. 2014;124:2125-35 pubmed
Tsuchiya A, Lu W, Weinhold B, Boulter L, Stutchfield B, Williams M, et al. Polysialic acid/neural cell adhesion molecule modulates the formation of ductular reactions in liver injury. Hepatology. 2014;60:1727-40 pubmed publisher
Cai S, Mennone A, Soroka C, Boyer J. All-trans-retinoic acid improves cholestasis in α-naphthylisothiocyanate-treated rats and Mdr2-/- mice. J Pharmacol Exp Ther. 2014;349:94-8 pubmed publisher
Cai S, Mennone A, Soroka C, Boyer J. Altered expression and function of canalicular transporters during early development of cholestatic liver injury in Abcb4-deficient mice. Am J Physiol Gastrointest Liver Physiol. 2014;306:G670-6 pubmed publisher
Li A, Morton J, Ma Y, Karim S, Zhou Y, Faller W, et al. Fascin is regulated by slug, promotes progression of pancreatic cancer in mice, and is associated with patient outcomes. Gastroenterology. 2014;146:1386-96.e1-17 pubmed publisher
Underkoffler L, Carr E, Nelson A, Ryan M, Schulz R, Schultz R, et al. Microarray data reveal relationship between Jag1 and Ddr1 in mouse liver. PLoS ONE. 2013;8:e84383 pubmed publisher
Gore A, Deitz S, Palam L, Craven K, Korc M. Pancreatic cancer-associated retinoblastoma 1 dysfunction enables TGF-? to promote proliferation. J Clin Invest. 2014;124:338-52 pubmed publisher
Collins M, Yan W, Sebolt Leopold J, Pasca di Magliano M. MAPK signaling is required for dedifferentiation of acinar cells and development of pancreatic intraepithelial neoplasia in mice. Gastroenterology. 2014;146:822-834.e7 pubmed publisher
Torres M, Rachagani S, Souchek J, Mallya K, Johansson S, Batra S. Novel pancreatic cancer cell lines derived from genetically engineered mouse models of spontaneous pancreatic adenocarcinoma: applications in diagnosis and therapy. PLoS ONE. 2013;8:e80580 pubmed publisher
Mederacke I, Hsu C, Troeger J, Huebener P, Mu X, Dapito D, et al. Fate tracing reveals hepatic stellate cells as dominant contributors to liver fibrosis independent of its aetiology. Nat Commun. 2013;4:2823 pubmed publisher
Court H, Amoyel M, Hackman M, Lee K, Xu R, Miller G, et al. Isoprenylcysteine carboxylmethyltransferase deficiency exacerbates KRAS-driven pancreatic neoplasia via Notch suppression. J Clin Invest. 2013;123:4681-94 pubmed
Alam C, Silvander J, Daniel E, Tao G, Kvarnström S, Alam P, et al. Keratin 8 modulates ?-cell stress responses and normoglycaemia. J Cell Sci. 2013;126:5635-44 pubmed publisher
Zhang Y, Yan W, Collins M, Bednar F, Rakshit S, Zetter B, et al. Interleukin-6 is required for pancreatic cancer progression by promoting MAPK signaling activation and oxidative stress resistance. Cancer Res. 2013;73:6359-74 pubmed publisher
Ito S, Satoh J, Matsubara T, Shah Y, Ahn S, Anderson C, et al. Cholestasis induces reversible accumulation of periplakin in mouse liver. BMC Gastroenterol. 2013;13:116 pubmed publisher
Lin T, Ibrahim W, Peng C, Finegold M, Tsai R. A novel role of nucleostemin in maintaining the genome integrity of dividing hepatocytes during mouse liver development and regeneration. Hepatology. 2013;58:2176-87 pubmed publisher
Sandilands A, Smith F, Lunny D, Campbell L, Davidson K, MacCallum S, et al. Generation and characterisation of keratin 7 (K7) knockout mice. PLoS ONE. 2013;8:e64404 pubmed publisher
Sputova K, Garbe J, Pelissier F, Chang E, Stampfer M, Labarge M. Aging phenotypes in cultured normal human mammary epithelial cells are correlated with decreased telomerase activity independent of telomere length. Genome Integr. 2013;4:4 pubmed publisher
Nollevaux M, Rahier J, Marchandise J, Thurion P, Godecharles S, Van den Steen G, et al. Characterization of ?-cell plasticity mechanisms induced in mice by a transient source of exogenous insulin. Am J Physiol Endocrinol Metab. 2013;304:E711-23 pubmed publisher
Ray K, Moss M, Franklin J, Weaver C, Higginbotham J, Song Y, et al. Heparin-binding epidermal growth factor-like growth factor eliminates constraints on activated Kras to promote rapid onset of pancreatic neoplasia. Oncogene. 2014;33:823-31 pubmed publisher
Kenerson H, Yeh M, Kazami M, Jiang X, Riehle K, McIntyre R, et al. Akt and mTORC1 have different roles during liver tumorigenesis in mice. Gastroenterology. 2013;144:1055-65 pubmed publisher
Takase H, Itoh T, Ino S, Wang T, Koji T, Akira S, et al. FGF7 is a functional niche signal required for stimulation of adult liver progenitor cells that support liver regeneration. Genes Dev. 2013;27:169-81 pubmed publisher
Collins M, Brisset J, Zhang Y, Bednar F, Pierre J, Heist K, et al. Metastatic pancreatic cancer is dependent on oncogenic Kras in mice. PLoS ONE. 2012;7:e49707 pubmed publisher
Miyazaki S, Tashiro F, Fujikura J, Yamato E, Miyazaki J. Acinar-to-ductal metaplasia induced by adenovirus-mediated pancreatic expression of Isl1. PLoS ONE. 2012;7:e47536 pubmed publisher
Kues W, Herrmann D, Barg Kues B, Haridoss S, Nowak Imialek M, Buchholz T, et al. Derivation and characterization of sleeping beauty transposon-mediated porcine induced pluripotent stem cells. Stem Cells Dev. 2013;22:124-35 pubmed publisher
Ardito C, Grüner B, Takeuchi K, Lubeseder Martellato C, Teichmann N, Mazur P, et al. EGF receptor is required for KRAS-induced pancreatic tumorigenesis. Cancer Cell. 2012;22:304-17 pubmed publisher
Li H, Kapoor A, Giel Moloney M, Rindi G, Leiter A. Notch signaling differentially regulates the cell fate of early endocrine precursor cells and their maturing descendants in the mouse pancreas and intestine. Dev Biol. 2012;371:156-69 pubmed publisher
Español Suñer R, Carpentier R, Van Hul N, Legry V, Achouri Y, Cordi S, et al. Liver progenitor cells yield functional hepatocytes in response to chronic liver injury in mice. Gastroenterology. 2012;143:1564-1575.e7 pubmed publisher
Bai H, Zhang N, Xu Y, Chen Q, Khan M, Potter J, et al. Yes-associated protein regulates the hepatic response after bile duct ligation. Hepatology. 2012;56:1097-107 pubmed publisher
Flisikowska T, Merkl C, Landmann M, Eser S, Rezaei N, Cui X, et al. A porcine model of familial adenomatous polyposis. Gastroenterology. 2012;143:1173-1175.e7 pubmed publisher
Coots A, Donnelly B, Mohanty S, McNeal M, Sestak K, Tiao G. Rotavirus infection of human cholangiocytes parallels the murine model of biliary atresia. J Surg Res. 2012;177:275-81 pubmed publisher
Grüner B, Hahne H, Mazur P, Trajkovic Arsic M, Maier S, Esposito I, et al. MALDI imaging mass spectrometry for in situ proteomic analysis of preneoplastic lesions in pancreatic cancer. PLoS ONE. 2012;7:e39424 pubmed publisher
Pylayeva Gupta Y, Lee K, Hajdu C, Miller G, Bar Sagi D. Oncogenic Kras-induced GM-CSF production promotes the development of pancreatic neoplasia. Cancer Cell. 2012;21:836-47 pubmed publisher
Dahia C, Mahoney E, Wylie C. Shh signaling from the nucleus pulposus is required for the postnatal growth and differentiation of the mouse intervertebral disc. PLoS ONE. 2012;7:e35944 pubmed publisher
Garbe J, Pepin F, Pelissier F, Sputova K, Fridriksdottir A, Guo D, et al. Accumulation of multipotent progenitors with a basal differentiation bias during aging of human mammary epithelia. Cancer Res. 2012;72:3687-701 pubmed publisher
Guo L, Sans M, Hou Y, Ernst S, Williams J. c-Jun/AP-1 is required for CCK-induced pancreatic acinar cell dedifferentiation and DNA synthesis in vitro. Am J Physiol Gastrointest Liver Physiol. 2012;302:G1381-96 pubmed publisher
Scotti M, Smith K, Butler A, Calcagno S, Crawford H, Leitges M, et al. Protein kinase C iota regulates pancreatic acinar-to-ductal metaplasia. PLoS ONE. 2012;7:e30509 pubmed publisher
Weerachayaphorn J, Mennone A, Soroka C, Harry K, Hagey L, Kensler T, et al. Nuclear factor-E2-related factor 2 is a major determinant of bile acid homeostasis in the liver and intestine. Am J Physiol Gastrointest Liver Physiol. 2012;302:G925-36 pubmed publisher
Gier B, Matveyenko A, Kirakossian D, Dawson D, Dry S, Butler P. Chronic GLP-1 receptor activation by exendin-4 induces expansion of pancreatic duct glands in rats and accelerates formation of dysplastic lesions and chronic pancreatitis in the Kras(G12D) mouse model. Diabetes. 2012;61:1250-62 pubmed publisher
Collins M, Bednar F, Zhang Y, Brisset J, Galban S, Galban C, et al. Oncogenic Kras is required for both the initiation and maintenance of pancreatic cancer in mice. J Clin Invest. 2012;122:639-53 pubmed publisher
CARRIERE C, Young A, Gunn J, Longnecker D, Korc M. Acute pancreatitis accelerates initiation and progression to pancreatic cancer in mice expressing oncogenic Kras in the nestin cell lineage. PLoS ONE. 2011;6:e27725 pubmed publisher
Snider N, Weerasinghe S, Singla A, Leonard J, Hanada S, Andrews P, et al. Energy determinants GAPDH and NDPK act as genetic modifiers for hepatocyte inclusion formation. J Cell Biol. 2011;195:217-29 pubmed publisher
Whipple C, Young A, Korc M. A KrasG12D-driven genetic mouse model of pancreatic cancer requires glypican-1 for efficient proliferation and angiogenesis. Oncogene. 2012;31:2535-44 pubmed publisher
Ying H, Elpek K, Vinjamoori A, Zimmerman S, Chu G, Yan H, et al. PTEN is a major tumor suppressor in pancreatic ductal adenocarcinoma and regulates an NF-?B-cytokine network. Cancer Discov. 2011;1:158-69 pubmed publisher
Philips G, Chan I, Swiderska M, Schroder V, Guy C, Karaca G, et al. Hedgehog signaling antagonist promotes regression of both liver fibrosis and hepatocellular carcinoma in a murine model of primary liver cancer. PLoS ONE. 2011;6:e23943 pubmed publisher
Kosoff R, Gardiner K, Merlo L, Pavlov K, Rustgi A, Maley C. Development and characterization of an organotypic model of Barrett's esophagus. J Cell Physiol. 2012;227:2654-9 pubmed publisher
Van Hul N, Lanthier N, Español Suñer R, Abarca Quinones J, Van Rooijen N, Leclercq I. Kupffer cells influence parenchymal invasion and phenotypic orientation, but not the proliferation, of liver progenitor cells in a murine model of liver injury. Am J Pathol. 2011;179:1839-50 pubmed publisher
Sans M, Sabbatini M, Ernst S, D Alecy L, Nishijima I, Williams J. Secretin is not necessary for exocrine pancreatic development and growth in mice. Am J Physiol Gastrointest Liver Physiol. 2011;301:G791-8 pubmed publisher
Criscimanna A, Speicher J, Houshmand G, Shiota C, Prasadan K, Ji B, et al. Duct cells contribute to regeneration of endocrine and acinar cells following pancreatic damage in adult mice. Gastroenterology. 2011;141:1451-62, 1462.e1-6 pubmed publisher
Hertel P, Crawford S, Finegold M, Estes M. Osteopontin upregulation in rotavirus-induced murine biliary atresia requires replicating virus but is not necessary for development of biliary atresia. Virology. 2011;417:281-92 pubmed publisher
Fiorotto R, Scirpo R, Trauner M, Fabris L, Hoque R, Spirli C, et al. Loss of CFTR affects biliary epithelium innate immunity and causes TLR4-NF-?B-mediated inflammatory response in mice. Gastroenterology. 2011;141:1498-508, 1508.e1-5 pubmed publisher
Heid I, Lubeseder Martellato C, Sipos B, Mazur P, Lesina M, Schmid R, et al. Early requirement of Rac1 in a mouse model of pancreatic cancer. Gastroenterology. 2011;141:719-30, 730.e1-7 pubmed publisher
Guerra C, Collado M, Navas C, Schuhmacher A, Hernández Porras I, Canamero M, et al. Pancreatitis-induced inflammation contributes to pancreatic cancer by inhibiting oncogene-induced senescence. Cancer Cell. 2011;19:728-39 pubmed publisher
Chu A, Diaz R, Hui J, Yanger K, Zong Y, Alpini G, et al. Lineage tracing demonstrates no evidence of cholangiocyte epithelial-to-mesenchymal transition in murine models of hepatic fibrosis. Hepatology. 2011;53:1685-95 pubmed publisher
Sparks E, Perrien D, Huppert K, Peterson T, Huppert S. Defects in hepatic Notch signaling result in disruption of the communicating intrahepatic bile duct network in mice. Dis Model Mech. 2011;4:359-67 pubmed publisher
Habtezion A, Toivola D, Asghar M, Kronmal G, Brooks J, Butcher E, et al. Absence of keratin 8 confers a paradoxical microflora-dependent resistance to apoptosis in the colon. Proc Natl Acad Sci U S A. 2011;108:1445-50 pubmed publisher
Lee K, Bar Sagi D. Oncogenic KRas suppresses inflammation-associated senescence of pancreatic ductal cells. Cancer Cell. 2010;18:448-58 pubmed publisher
Omenetti A, Yang L, Gainetdinov R, Guy C, Choi S, Chen W, et al. Paracrine modulation of cholangiocyte serotonin synthesis orchestrates biliary remodeling in adults. Am J Physiol Gastrointest Liver Physiol. 2011;300:G303-15 pubmed publisher
Hofmann J, Zovein A, Koh H, Radtke F, Weinmaster G, Iruela Arispe M. Jagged1 in the portal vein mesenchyme regulates intrahepatic bile duct development: insights into Alagille syndrome. Development. 2010;137:4061-72 pubmed publisher
Snider N, Weerasinghe S, INIGUEZ LLUHI J, Herrmann H, Omary M. Keratin hypersumoylation alters filament dynamics and is a marker for human liver disease and keratin mutation. J Biol Chem. 2011;286:2273-84 pubmed publisher
Zhou Q, Snider N, Liao J, Li D, Hong A, Ku N, et al. Characterization of in vivo keratin 19 phosphorylation on tyrosine-391. PLoS ONE. 2010;5:e13538 pubmed publisher
Lin T, Meng L, Li Y, Tsai R. Tumor-initiating function of nucleostemin-enriched mammary tumor cells. Cancer Res. 2010;70:9444-52 pubmed publisher
Marzioni M, Saccomanno S, Candelaresi C, Rychlicki C, Agostinelli L, Shanmukhappa K, et al. Pancreatic Duodenal Homeobox-1 de novo expression drives cholangiocyte neuroendocrine-like transdifferentiation. J Hepatol. 2010;53:663-70 pubmed publisher
Scholten D, Osterreicher C, Scholten A, Iwaisako K, Gu G, Brenner D, et al. Genetic labeling does not detect epithelial-to-mesenchymal transition of cholangiocytes in liver fibrosis in mice. Gastroenterology. 2010;139:987-98 pubmed publisher
Osada M, Jardine L, Misir R, Andl T, Millar S, Pezzano M. DKK1 mediated inhibition of Wnt signaling in postnatal mice leads to loss of TEC progenitors and thymic degeneration. PLoS ONE. 2010;5:e9062 pubmed publisher
Copple B. Hypoxia stimulates hepatocyte epithelial to mesenchymal transition by hypoxia-inducible factor and transforming growth factor-beta-dependent mechanisms. Liver Int. 2010;30:669-82 pubmed publisher
Hanada S, Snider N, Brunt E, Hollenberg P, Omary M. Gender dimorphic formation of mouse Mallory-Denk bodies and the role of xenobiotic metabolism and oxidative stress. Gastroenterology. 2010;138:1607-17 pubmed publisher
Labarge M, Nelson C, Villadsen R, Fridriksdottir A, Ruth J, Stampfer M, et al. Human mammary progenitor cell fate decisions are products of interactions with combinatorial microenvironments. Integr Biol (Camb). 2009;1:70-9 pubmed publisher
Sun P, Yuan Y, Li A, Li B, Dai X. Cytokeratin expression during mouse embryonic and early postnatal mammary gland development. Histochem Cell Biol. 2010;133:213-21 pubmed publisher
Soroka C, Mennone A, Hagey L, Ballatori N, Boyer J. Mouse organic solute transporter alpha deficiency enhances renal excretion of bile acids and attenuates cholestasis. Hepatology. 2010;51:181-90 pubmed publisher
Sackett S, Gao Y, Shin S, Esterson Y, Tsingalia A, Hurtt R, et al. Foxl1 promotes liver repair following cholestatic injury in mice. Lab Invest. 2009;89:1387-96 pubmed publisher
Loebermann M, Sombetzki M, Langner C, Fuchsbichler A, Gumhold J, Silbert D, et al. Imbalance of pro- and antifibrogenic genes and bile duct injury in murine Schistosoma mansoni infection-induced liver fibrosis. Trop Med Int Health. 2009;14:1418-25 pubmed publisher
Zhong B, Strnad P, Selmi C, Invernizzi P, Tao G, Caleffi A, et al. Keratin variants are overrepresented in primary biliary cirrhosis and associate with disease severity. Hepatology. 2009;50:546-54 pubmed publisher
VanSaun M, Lee I, Washington M, Matrisian L, Gorden D. High fat diet induced hepatic steatosis establishes a permissive microenvironment for colorectal metastases and promotes primary dysplasia in a murine model. Am J Pathol. 2009;175:355-64 pubmed publisher
Halilbasic E, Fiorotto R, Fickert P, Marschall H, Moustafa T, Spirli C, et al. Side chain structure determines unique physiologic and therapeutic properties of norursodeoxycholic acid in Mdr2-/- mice. Hepatology. 2009;49:1972-81 pubmed publisher
Li Z, White P, Tuteja G, Rubins N, Sackett S, Kaestner K. Foxa1 and Foxa2 regulate bile duct development in mice. J Clin Invest. 2009;119:1537-45 pubmed publisher
von Burstin J, Eser S, Paul M, Seidler B, Brandl M, Messer M, et al. E-cadherin regulates metastasis of pancreatic cancer in vivo and is suppressed by a SNAIL/HDAC1/HDAC2 repressor complex. Gastroenterology. 2009;137:361-71, 371.e1-5 pubmed publisher
Van Hul N, Abarca Quinones J, Sempoux C, Horsmans Y, Leclercq I. Relation between liver progenitor cell expansion and extracellular matrix deposition in a CDE-induced murine model of chronic liver injury. Hepatology. 2009;49:1625-35 pubmed publisher
CARRIERE C, Young A, Gunn J, Longnecker D, Korc M. Acute pancreatitis markedly accelerates pancreatic cancer progression in mice expressing oncogenic Kras. Biochem Biophys Res Commun. 2009;382:561-5 pubmed publisher
Tian H, Callahan C, DuPree K, Darbonne W, Ahn C, Scales S, et al. Hedgehog signaling is restricted to the stromal compartment during pancreatic carcinogenesis. Proc Natl Acad Sci U S A. 2009;106:4254-9 pubmed publisher
Roda O, Ortiz Zapater E, Martínez Bosch N, Gutiérrez Gallego R, Vila Perello M, Ampurdanés C, et al. Galectin-1 is a novel functional receptor for tissue plasminogen activator in pancreatic cancer. Gastroenterology. 2009;136:1379-90, e1-5 pubmed publisher
Mohammad M, Raftos D, Joss J. Cytoskeletal proteins in thymic epithelial cells of the Australian lungfish Neoceratodus forsteri. J Anat. 2009;214:140-52 pubmed publisher
Stairs D, Nakagawa H, Klein Szanto A, Mitchell S, Silberg D, Tobias J, et al. Cdx1 and c-Myc foster the initiation of transdifferentiation of the normal esophageal squamous epithelium toward Barrett's esophagus. PLoS ONE. 2008;3:e3534 pubmed publisher
Feng N, Kim B, Fenaux M, Nguyen H, Vo P, Omary M, et al. Role of interferon in homologous and heterologous rotavirus infection in the intestines and extraintestinal organs of suckling mice. J Virol. 2008;82:7578-90 pubmed publisher
Pangas S, Li X, Umans L, Zwijsen A, Huylebroeck D, Gutierrez C, et al. Conditional deletion of Smad1 and Smad5 in somatic cells of male and female gonads leads to metastatic tumor development in mice. Mol Cell Biol. 2008;28:248-57 pubmed
Zhong B, Strnad P, Toivola D, Tao G, Ji X, Greenberg H, et al. Reg-II is an exocrine pancreas injury-response product that is up-regulated by keratin absence or mutation. Mol Biol Cell. 2007;18:4969-78 pubmed
Pangas S, Jorgez C, Tran M, Agno J, Li X, Brown C, et al. Intraovarian activins are required for female fertility. Mol Endocrinol. 2007;21:2458-71 pubmed
Wu R, Hendrix Lucas N, Kuick R, Zhai Y, Schwartz D, Akyol A, et al. Mouse model of human ovarian endometrioid adenocarcinoma based on somatic defects in the Wnt/beta-catenin and PI3K/Pten signaling pathways. Cancer Cell. 2007;11:321-33 pubmed
CARRIERE C, Seeley E, Goetze T, Longnecker D, Korc M. The Nestin progenitor lineage is the compartment of origin for pancreatic intraepithelial neoplasia. Proc Natl Acad Sci U S A. 2007;104:4437-42 pubmed
Michon F, Charveron M, Dhouailly D. Dermal condensation formation in the chick embryo: requirement for integrin engagement and subsequent stabilization by a possible notch/integrin interaction. Dev Dyn. 2007;236:755-68 pubmed
Pasca di Magliano M, Sekine S, Ermilov A, Ferris J, Dlugosz A, Hebrok M. Hedgehog/Ras interactions regulate early stages of pancreatic cancer. Genes Dev. 2006;20:3161-73 pubmed
Fickert P, Wagner M, Marschall H, Fuchsbichler A, Zollner G, Tsybrovskyy O, et al. 24-norUrsodeoxycholic acid is superior to ursodeoxycholic acid in the treatment of sclerosing cholangitis in Mdr2 (Abcb4) knockout mice. Gastroenterology. 2006;130:465-81 pubmed
Kuang C, Xiao Y, Liu X, Stringfield T, Zhang S, Wang Z, et al. In vivo disruption of TGF-beta signaling by Smad7 leads to premalignant ductal lesions in the pancreas. Proc Natl Acad Sci U S A. 2006;103:1858-63 pubmed
Fickert P, Fuchsbichler A, Marschall H, Wagner M, Zollner G, Krause R, et al. Lithocholic acid feeding induces segmental bile duct obstruction and destructive cholangitis in mice. Am J Pathol. 2006;168:410-22 pubmed
Zhong B, Zhou Q, Toivola D, Tao G, Resurreccion E, Omary M. Organ-specific stress induces mouse pancreatic keratin overexpression in association with NF-kappaB activation. J Cell Sci. 2004;117:1709-19 pubmed
Toivola D, Krishnan S, Binder H, Singh S, Omary M. Keratins modulate colonocyte electrolyte transport via protein mistargeting. J Cell Biol. 2004;164:911-21 pubmed
Brulet P, Babinet C, Kemler R, Jacob F. Monoclonal antibodies against trophectoderm-specific markers during mouse blastocyst formation. Proc Natl Acad Sci U S A. 1980;77:4113-7 pubmed
Kemler R, Brulet P, Schnebelen M, Gaillard J, Jacob F. Reactivity of monoclonal antibodies against intermediate filament proteins during embryonic development. J Embryol Exp Morphol. 1981;64:45-60 pubmed
product information
Internal ID :
2833
Name :
TROMA-III
Depositor Name :
Kemler, R.
Depositor Institution :
MPI fuer Immunobiologie
Date Deposited :
12/22/04
Allow Hybridoma Distribution :
Yes
Cells Available (legacy) :
Yes
Antigen :
Keratin, type I; cytokeratin 19
Antigen Species :
Mouse
Host Species :
rat
Isotype :
RIgG2a, kappa light chain
Isotype for catalog (legacy) :
IgG2a, kappa light chain
Positive Tested Species Reactivity :
Human,Mouse
Species Tested (legacy) :
mouse
Initial Publication Pubmed ID :
6933460
Depositor Notes (Special Instructions) :
Methanol: acetone (1:1) fixation works well for cultured cells.
Collections :
Cell markers,Cytoskeleton,Human
Search Keywords :
Kemler, Rolf, Keratin, type I cytoskeletal 19, Mouse, RIgG2a, kappa light chain, Mouse/Human, Krt19, Krt1-19, AB_2133570, Monoclonal, ck19, ck-19
Antigen Molecular Weight :
Predicted: 44.5 kDa
Gene :
Krt19
Alternate Gene Name(s) :
Krt1-19
Uniprot ID :
P19001
Antibody Registry ID :
AB_2133570
Immunogen :
TDM1 (Trophoblastoma) cell line intermediate filaments
Immunogen Sequence :
Full length protein
Clonality :
Monoclonal
Myeloma Strain :
SP2/0
Epitope Mapped :
No
Recommended Applications :
FACS,FFPE,Immunofluorescence,Immunohistochemistry,Immunoprecipitation,Western Blot
Immunoblotting (legacy) :
Yes
Immunohistochemistry Pubmed IDs :
28892048 29126873 28893353 29140985 29069604 28765528 28628031 28442553 28388653 27912077 28090569 27824131 27626448 27659014 27111582 27181403 27358050 27342733 26946344 26988419 26313562 26173433 26390243 26113087 26178787 25446530 25311989 24971483 24713432 24737325 24691445 24795355 24770696 24743779 24481602 24492652 24585441 23376846 23849208 23376645 23355395 23322300 23226501 22922013 22864254 21712022 22140463 23077629 23006330 22975374 22886419 22761793 21882191 21996748 22345550 22232209 22140463 21712022 21852360 21712022 21854752 21742364 21684285 21984975 21665147 21282722 21220329 21075310 19902485 19841618 20158611 19902485 19841618 19747186 19362090 19541928 19436110 19475687 19292977 19296469 19246386 19166477 18953412 18495762 17967875 17898082 17609433 17418409 17418409 17360542 17114586 16443684 16436656 16472600 6171607 30536089 31375695 31351129
Immunofluorescence Pubmed IDs :
30014851 29973218 29558367 28926640 28581486 28090569 27895309 27788482 28623666 28377509 28535371 28445529 28445948 28089565 27857132 27799657 27824131 27618307 27659014 27081925 27526291 26515029 26502405 26052514 25128759 24700364 25232867 25158854 25071418 24910432 24713432 24462734 24315826 23376846 24391948 24334458 24144696 23813570 24278292 24264436 24216479 24097820 23718190 23403947 22989381 22964416 22785360 22461029 22698407 22359542 21852360 22006949 21763240 21520179 21071507 21220329 21062863 20621380 20546735 20064513 19937336 20161711 19937336 19296469 19171142 20023793 17279577 15075232 6933460 30878582 22552289 29694896 31351129 31290579
Western Blot Pubmed IDs :
23741325 23376645 22006949 21071507 21062750 21045149 20064513 19585610 19475687 15075232 15007064 6933460
FFPE Pubmed IDs :
28765528 28581486 28628031 28442553 27633013 27181403 27358050 27342733 26946344 26988419 26502405 26313562 26390243 26113087 26178787 25446530 25311989 24971483 24713432 24737325 24691445 24770696 24743779 24481602 24492652 24585441 24334458 23813570 23376645 23355395 22864254 23077629 23006330 22975374 22886419 22761793 21882191 21996748 22345550 22232209 22140463 21852360 21712022 21852360 22140463 21220329 19841618 19902485 19841618 19362090 19541928 19436110 19292977 19296469 19246386 18953412 17967875 17898082 17609433 17418409 31351129 31375695
FACS Pubmed IDs :
26276631
DSHB Growth Medium :
Iscove's
References (legacy) :
Proc. Nat’l. Acad. Sci. 77, 4113-4117.; The Immune System. (Vol 1, pp. 102-109). ; J. Embryol. Exp. Morphol. 64, 45-60.; J. Hepatol. (2010), doi:10.1016/j.jhep.2010.04.022.; Gastroenterology 139(3), 987-998.; PNAS 108(4), 1445-1450.; Gastroenterology 141, 1498-1508.; J. Clin. Invest. 122(10), 3504-3515.
company information
Developmental Studies Hybridoma Bank
University of Iowa
http://dshb.biology.uiowa.edu
headquarters: US