product summary
company name :
Cell Signaling Technology
product type :
antibody
product name :
Smad3 (C67H9) Rabbit mAb
catalog :
9523P
quantity :
40 ul
price :
123 USD
clonality :
monoclonal
host :
rabbit
reactivity :
human, mouse, rat, cow
application :
western blot, immunocytochemistry, immunoprecipitation, flow cytometry, chromatin immunoprecipitation, proximity ligation assay
citations: 24
Published Application/Species/DilutionReference
  • western blot (knockdown validation); rat; fig 5
Hesler R, Huang J, Starr M, Treboschi V, Bernanke A, Nixon A, et al. TGF-β-induced stromal CYR61 promotes resistance to gemcitabine in pancreatic ductal adenocarcinoma through downregulation of the nucleoside transporters hENT1 and hCNT3. Carcinogenesis. 2016;: pubmed
  • western blot; human; 1:1000; fig s5
Cammareri P, Rose A, Vincent D, Wang J, Nagano A, Libertini S, et al. Inactivation of TGFβ receptors in stem cells drives cutaneous squamous cell carcinoma. Nat Commun. 2016;7:12493 pubmed publisher
  • immunocytochemistry; human; fig s10
Chang H, Liu Y, Xue M, Liu H, Du S, Zhang L, et al. Synergistic action of master transcription factors controls epithelial-to-mesenchymal transition. Nucleic Acids Res. 2016;44:2514-27 pubmed publisher
  • western blot; mouse; fig 5
Lee S, Litan A, Li Z, Graves B, Lindsey S, Barwe S, et al. Na,K-ATPase β1-subunit is a target of sonic hedgehog signaling and enhances medulloblastoma tumorigenicity. Mol Cancer. 2015;14:159 pubmed publisher
  • western blot; human
Faura Tellez G, Vandepoele K, Brouwer U, Koning H, Elderman R, Hackett T, et al. Protocadherin-1 binds to SMAD3 and suppresses TGF-β1-induced gene transcription. Am J Physiol Lung Cell Mol Physiol. 2015;309:L725-35 pubmed publisher
  • chromatin immunoprecipitation; mouse; 1:50; fig 1d
Feuerborn A, Mathow D, Srivastava P, Gretz N, Grone H. Basonuclin-1 modulates epithelial plasticity and TGF-β1-induced loss of epithelial cell integrity. Oncogene. 2015;34:1185-95 pubmed publisher
  • chromatin immunoprecipitation; mouse; fig s15
  • proximity ligation assay; mouse; fig s12
Yoon J, Sudo K, Kuroda M, Kato M, Lee I, Han J, et al. Phosphorylation status determines the opposing functions of Smad2/Smad3 as STAT3 cofactors in TH17 differentiation. Nat Commun. 2015;6:7600 pubmed publisher
  • western blot; mouse; 1:1000; fig 7
Tontonoz P, Cortez-Toledo O, Wroblewski K, Hong C, Lim L, Carranza R, et al. The orphan nuclear receptor Nur77 is a determinant of myofiber size and muscle mass in mice. Mol Cell Biol. 2015;35:1125-38 pubmed publisher
  • western blot; human; 1:1000; fig 7
Zhou X, Tao Y, Liang C, Zhang Y, Li H, Chen Q. BMP3 Alone and Together with TGF-β Promote the Differentiation of Human Mesenchymal Stem Cells into a Nucleus Pulposus-Like Phenotype. Int J Mol Sci. 2015;16:20344-59 pubmed publisher
  • western blot; mouse; 1:1000; fig 7
Das R, Xu S, Quan X, Nguyen T, Kong I, Chung C, et al. Upregulation of mitochondrial Nox4 mediates TGF-β-induced apoptosis in cultured mouse podocytes. Am J Physiol Renal Physiol. 2014;306:F155-67 pubmed publisher
  • western blot; mouse; 1:1000
Watatani H, Maeshima Y, Hinamoto N, Yamasaki H, Ujike H, Tanabe K, et al. Vasohibin-1 deficiency enhances renal fibrosis and inflammation after unilateral ureteral obstruction. Physiol Rep. 2014;2: pubmed publisher
  • western blot; rat
Yi X, Li X, Zhou Y, Ren S, Wan W, Feng G, et al. Hepatocyte growth factor regulates the TGF-β1-induced proliferation, differentiation and secretory function of cardiac fibroblasts. Int J Mol Med. 2014;34:381-90 pubmed publisher
  • western blot; mouse; fig 2,3
Flanders K, Heger C, Conway C, Tang B, Sato M, Dengler S, et al. Brightfield proximity ligation assay reveals both canonical and mixed transforming growth factor-β/bone morphogenetic protein Smad signaling complexes in tissue sections. J Histochem Cytochem. 2014;62:846-63 pubmed publisher
  • western blot; human; fig 1
Holtzhausen A, Golzio C, How T, Lee Y, Schiemann W, Katsanis N, et al. Novel bone morphogenetic protein signaling through Smad2 and Smad3 to regulate cancer progression and development. FASEB J. 2014;28:1248-67 pubmed publisher
  • western blot; rat
Beaudoin M, Snook L, Arkell A, Stefanson A, Wan Z, Simpson J, et al. Novel effects of rosiglitazone on SMAD2 and SMAD3 signaling in white adipose tissue of diabetic rats. Obesity (Silver Spring). 2014;22:1632-42 pubmed publisher
  • western blot; mouse; fig 6
Matsuyama M, Nomori A, Nakakuni K, Shimono A, Fukushima M. Secreted Frizzled-related protein 1 (Sfrp1) regulates the progression of renal fibrosis in a mouse model of obstructive nephropathy. J Biol Chem. 2014;289:31526-33 pubmed publisher
Li Y, Klausen C, Cheng J, Zhu H, Leung P. Activin A, B, and AB increase human trophoblast cell invasion by up-regulating N-cadherin. J Clin Endocrinol Metab. 2014;99:E2216-25 pubmed publisher
Kasai A, Ishimaru Y, Higashino K, Kobayashi K, Yamamuro A, Yoshioka Y, et al. Inhibition of apelin expression switches endothelial cells from proliferative to mature state in pathological retinal angiogenesis. Angiogenesis. 2013;16:723-34 pubmed publisher
Guo Z, Khattar M, Schroder P, Miyahara Y, Wang G, He X, et al. A dynamic dual role of IL-2 signaling in the two-step differentiation process of adaptive regulatory T cells. J Immunol. 2013;190:3153-62 pubmed publisher
Nakamura K, Nakano S, Miyoshi T, Yamanouchi K, Nishihara M. Loss of SPARC in mouse skeletal muscle causes myofiber atrophy. Muscle Nerve. 2013;48:791-9 pubmed publisher
Louafi F, Martinez-Nunez R, Sanchez-Elsner T. MicroRNA-155 targets SMAD2 and modulates the response of macrophages to transforming growth factor-{beta}. J Biol Chem. 2010;285:41328-36 pubmed publisher
Li Q, Pangas S, Jorgez C, Graff J, Weinstein M, Matzuk M. Redundant roles of SMAD2 and SMAD3 in ovarian granulosa cells in vivo. Mol Cell Biol. 2008;28:7001-11 pubmed publisher
Sarközi R, Flucher K, Haller V, Pirklbauer M, Mayer G, Schramek H. Oncostatin M inhibits TGF-β1-induced CTGF expression via STAT3 in human proximal tubular cells. Biochem Biophys Res Commun. 2012;424:801-6 pubmed publisher
Xu B, Chen H, Xu W, Zhang W, Buckley S, Zheng S, et al. Molecular mechanisms of MMP9 overexpression and its role in emphysema pathogenesis of Smad3-deficient mice. Am J Physiol Lung Cell Mol Physiol. 2012;303:L89-96 pubmed publisher
product information
SKU :
9523P
Product-Name :
Smad3 (C67H9) Rabbit mAb
Size :
40 ul
Price-(USD) :
123 USD
Species-x-Reactivity :
H, M, R, Mk, (X, Z, B)
Applications :
Chromatin Immunoprecipitation
Product-Category :
Developmental Biology
Shipping-Temp :
AMBIENT
Storage-Temp :
-20°C
Product-Type :
Monoclonal Antibody
MW :
52
Host :
Rabbit
Target :
Smad3
Primary-Protein :
Smad3
Alt-Names :
DKFZp586N0721,DKFZp686J10186,HSPC193,HsT17436,JV15-2,MAD homolog 3,MAD, mothers against decapentaplegic homolog 3,MADH3,MGC60396,Mad3,Mothers against DPP homolog 3,Mothers against decapentaplegic homolog 3,SMA- and MAD-related protein 3,SMAD 3,SMAD family member 3,SMAD, mothers against DPP homolog 3,SMAD3,hMAD-3,hSMAD3,mad homolog JV15-2,mad protein homolog
company information
Cell Signaling Technology
3 Trask Lane
Danvers, MA 01923
info@cellsignal.com
www.cellsignal.com
8776162355
headquarters: USA
Established in Beverly, MA in 1999, Cell Signaling Technology (CST) is a privately-owned company with over 400 employees worldwide. We are dedicated to providing innovative research tools that are used to help define mechanisms underlying cell function and disease. Since its inception, CST has become the world leader in the production of the highest quality activation-state and total protein antibodies utilized to expand knowledge of cell signaling pathways. Our mission is to deliver the world's highest quality research tools that accelerate progress in biological research and personalized medicine.