product summary
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company name :
Novus Biologicals
other brands :
IMGENEX
product type :
antibody
product name :
Nestin Antibody (10C2) - BSA Free
catalog :
NB300-266
quantity :
0.1 ml (also 0.025 ml)
price :
469 USD
clonality :
monoclonal
host :
mouse
conjugate :
nonconjugated
clone name :
10C2
reactivity :
human
application :
western blot, immunohistochemistry, immunocytochemistry, flow cytometry, immunohistochemistry - paraffin section, immunohistochemistry - frozen section
more info or order :
citations: 141
Published Application/Species/Sample/DilutionReference
  • western blot; human; 1:1000; fig 4b
Lo Cascio C, McNamara J, Melendez E, Lewis E, Dufault M, Sanai N, et al. Nonredundant, isoform-specific roles of HDAC1 in glioma stem cells. JCI Insight. 2021;6: pubmed publisher
  • immunohistochemistry - paraffin section; human
Murtas D, Piras F, Minerba L, Maxia C, Ferreli C, Demurtas P, et al. Activated Notch1 expression is associated with angiogenesis in cutaneous melanoma. Clin Exp Med. 2015;15:351-60 pubmed publisher
  • western blot; human
Heroux M, Chesnik M, Halligan B, Al Gizawiy M, Connelly J, Mueller W, et al. Comprehensive characterization of glioblastoma tumor tissues for biomarker identification using mass spectrometry-based label-free quantitative proteomics. Physiol Genomics. 2014;46:467-81 pubmed publisher
  • immunocytochemistry; human
  • immunohistochemistry; human
Lai S, Piras F, Spiga S, Perra M, Minerba L, Piga M, et al. Nestin and vimentin colocalization affects the subcellular location of glucocorticoid receptor in cutaneous melanoma. Histopathology. 2013;62:487-98 pubmed publisher
  • western blot; human
Kondo S, Wakisaka N, Muramatsu M, Zen Y, Endo K, Murono S, et al. Epstein-Barr virus latent membrane protein 1 induces cancer stem/progenitor-like cells in nasopharyngeal epithelial cell lines. J Virol. 2011;85:11255-64 pubmed publisher
  • immunohistochemistry; human
Loudig O, Brandwein Gensler M, Kim R, Lin J, Isayeva T, Liu C, et al. Illumina whole-genome complementary DNA-mediated annealing, selection, extension and ligation platform: assessing its performance in formalin-fixed, paraffin-embedded samples and identifying invasion pattern-related genes in oral squamous cell carcin. Hum Pathol. 2011;42:1911-22 pubmed publisher
  • western blot; human
Porayette P, Gallego M, Kaltcheva M, Bowen R, Vadakkadath Meethal S, Atwood C. Differential processing of amyloid-beta precursor protein directs human embryonic stem cell proliferation and differentiation into neuronal precursor cells. J Biol Chem. 2009;284:23806-17 pubmed publisher
  • immunocytochemistry; human
Ropolo M, Daga A, Griffero F, Foresta M, Casartelli G, Zunino A, et al. Comparative analysis of DNA repair in stem and nonstem glioma cell cultures. Mol Cancer Res. 2009;7:383-92 pubmed publisher
  • immunocytochemistry; human
Castriconi R, Daga A, Dondero A, Zona G, Poliani P, Melotti A, et al. NK cells recognize and kill human glioblastoma cells with stem cell-like properties. J Immunol. 2009;182:3530-9 pubmed publisher
  • immunocytochemistry; human
Gangemi R, Griffero F, Marubbi D, Perera M, Capra M, Malatesta P, et al. SOX2 silencing in glioblastoma tumor-initiating cells causes stop of proliferation and loss of tumorigenicity. Stem Cells. 2009;27:40-8 pubmed publisher
  • immunocytochemistry; human
Wright L, Li J, Caldwell M, Wallace K, Johnson J, Svendsen C. Gene expression in human neural stem cells: effects of leukemia inhibitory factor. J Neurochem. 2003;86:179-95 pubmed
  • immunocytochemistry; human
Messam C, Hou J, Berman J, Major E. Analysis of the temporal expression of nestin in human fetal brain derived neuronal and glial progenitor cells. Brain Res Dev Brain Res. 2002;134:87-92 pubmed
Rothermund K, Calabrese T, Syed Picard F. Differential Effects of Escherichia coli- Versus Porphyromonas gingivalis-derived Lipopolysaccharides on Dental Pulp Stem Cell Differentiation in Scaffold-free Engineered Tissues. J Endod. 2022;48:1378-1386.e2 pubmed publisher
Adjei Sowah E, O Connor S, Veldhuizen J, Lo Cascio C, Plaisier C, Mehta S, et al. Investigating the Interactions of Glioma Stem Cells in the Perivascular Niche at Single-Cell Resolution using a Microfluidic Tumor Microenvironment Model. Adv Sci (Weinh). 2022;9:e2201436 pubmed publisher
Deshors P, Arnauduc F, Bo xeb lle B, Cohen Jonathan Moyal E, Courtade Sa xef di M, Evrard S. Impact of Regorafenib on Endothelial Transdifferentiation of Glioblastoma Stem-like Cells. Cancers (Basel). 2022;14: pubmed publisher
Garc xed a G xf3 mez P, Gol xe1 n I, S Dadras M, Mezheyeuski A, Bellomo C, Tzavlaki K, et al. NOX4 regulates TGFβ-induced proliferation and self-renewal in glioblastoma stem cells. Mol Oncol. 2022;16:1891-1912 pubmed publisher
Schmid B, Holst B, Clausen C, Bahnassawy L, Reinhardt P, Bakker M, et al. Generation of a set of isogenic iPSC lines carrying all APOE genetic variants (Ɛ2/Ɛ3/Ɛ4) and knock-out for the study of APOE biology in health and disease. Stem Cell Res. 2021;52:102180 pubmed publisher
Kim J, Koh H, Zhen X, Lee D, Ha H, Lee J. Establishment of iPSC (KRIBBi001-A) from CD34+ group O D-negative bone marrow blood. Stem Cell Res. 2021;51:102199 pubmed publisher
Ebelt N, Zuniga E, Johnson B, Diamond D, Manuel E. 5-Azacytidine Potentiates Anti-tumor Immunity in a Model of Pancreatic Ductal Adenocarcinoma. Front Immunol. 2020;11:538 pubmed publisher
So J, Skrypek N, Yang H, Merchant A, Nelson G, Chen W, et al. Induction of DNMT3B by PGE2 and IL6 at Distant Metastatic Sites Promotes Epigenetic Modification and Breast Cancer Colonization. Cancer Res. 2020;80:2612-2627 pubmed publisher
Uribe Etxebarria V, Garcia Gallastegui P, Pérez Garrastachu M, Casado Andrés M, Irastorza I, Unda F, et al. Wnt-3a Induces Epigenetic Remodeling in Human Dental Pulp Stem Cells. Cells. 2020;9: pubmed publisher
Li T, Garcia Gomez A, Morante Palacios O, Ciudad L, Özkaramehmet S, Van Dijck E, et al. SIRT1/2 orchestrate acquisition of DNA methylation and loss of histone H3 activating marks to prevent premature activation of inflammatory genes in macrophages. Nucleic Acids Res. 2020;48:665-681 pubmed publisher
Sun X, Cui Y, Feng H, Liu H, Liu X. TGF-β signaling controls Foxp3 methylation and T reg cell differentiation by modulating Uhrf1 activity. J Exp Med. 2019;216:2819-2837 pubmed publisher
Sabelström H, Petri R, Shchors K, Jandial R, Schmidt C, Sacheva R, et al. Driving Neuronal Differentiation through Reversal of an ERK1/2-miR-124-SOX9 Axis Abrogates Glioblastoma Aggressiveness. Cell Rep. 2019;28:2064-2079.e11 pubmed publisher
Kuo H, Wu R, Li S, Yang A, Kong A. Anthocyanin Delphinidin Prevents Neoplastic Transformation of Mouse Skin JB6 P+ Cells: Epigenetic Re-activation of Nrf2-ARE Pathway. AAPS J. 2019;21:83 pubmed publisher
Fisslthaler B, Zippel N, Abdel Malik R, Delgado Lagos F, Zukunft S, Thoele J, et al. Myeloid-Specific Deletion of the AMPKα2 Subunit Alters Monocyte Protein Expression and Atherogenesis. Int J Mol Sci. 2019;20: pubmed publisher
Gatta E, Grayson D, Auta J, Saudagar V, Dong E, Chen Y, et al. Genome-wide methylation in alcohol use disorder subjects: implications for an epigenetic regulation of the cortico-limbic glucocorticoid receptors (NR3C1). Mol Psychiatry. 2019;: pubmed publisher
Adamska A, Pilacinski S, Zozulinska Ziolkiewicz D, Gandecka A, Grzelka A, Konwerska A, et al. An increased skin microvessel density is associated with neurovascular complications in type 1 diabetes mellitus. Diab Vasc Dis Res. 2019;16:513-522 pubmed publisher
Balzamino B, Esposito G, Marino R, Keller F, Micera A. Changes in vitreal protein profile and retina mRNAs in Reeler mice: NGF, IL33 and Müller cell activation. PLoS ONE. 2019;14:e0212732 pubmed publisher
Maxia C, Murtas D, Isola M, Tamma R, Zucca I, Piras F, et al. Immunophenotypic characterization of telocyte-like cells in pterygium. Mol Vis. 2018;24:853-866 pubmed
Huang M, Chou Y, Li M, Shih T, Lin S, Chuang H, et al. Epigenetic targeting DNMT1 of pancreatic ductal adenocarcinoma using interstitial control release biodegrading polymer reduced tumor growth through hedgehog pathway inhibition. Pharmacol Res. 2019;139:50-61 pubmed publisher
Adamska A, Araszkiewicz A, Pilacinski S, Gandecka A, Grzelka A, Kowalska K, et al. Dermal microvessel density and maturity is closely associated with atherogenic dyslipidemia and accumulation of advanced glycation end products in adult patients with type 1 diabetes. Microvasc Res. 2019;121:46-51 pubmed publisher
Murtas D, Pilloni L, Diana A, Casula L, Tomei S, Piras F, et al. Tyrosinase and nestin immunohistochemical expression in melanocytic nevi as a histopathologic pattern to trace melanocyte differentiation and nevogenesis. Histochem Cell Biol. 2019;151:175-185 pubmed publisher
Miotto B, Marchal C, Adelmant G, Guinot N, Xie P, Marto J, et al. Stabilization of the methyl-CpG binding protein ZBTB38 by the deubiquitinase USP9X limits the occurrence and toxicity of oxidative stress in human cells. Nucleic Acids Res. 2018;46:4392-4404 pubmed publisher
Meliso F, Micali D, Silva C, Sabedot T, Coetzee S, Koch A, et al. SIRT1 regulates Mxd1 during malignant melanoma progression. Oncotarget. 2017;8:114540-114553 pubmed publisher
Yang J, Wu R, Li W, Gao L, Yang Y, Li P, et al. The triterpenoid corosolic acid blocks transformation and epigenetically reactivates Nrf2 in TRAMP-C1 prostate cells. Mol Carcinog. 2018;57:512-521 pubmed publisher
Li W, Su Z, Guo Y, Zhang C, Wu R, Gao L, et al. Curcumin Derivative Epigenetically Reactivates Nrf2 Antioxidative Stress Signaling in Mouse Prostate Cancer TRAMP C1 Cells. Chem Res Toxicol. 2017;: pubmed publisher
Chu Y, Ko C, Wang S, Lin P, Wang H, Lin W, et al. Bortezomib-induced miRNAs direct epigenetic silencing of locus genes and trigger apoptosis in leukemia. Cell Death Dis. 2017;8:e3167 pubmed publisher
Heffernan J, McNamara J, Borwege S, Vernon B, Sanai N, Mehta S, et al. PNIPAAm-co-Jeffamine® (PNJ) scaffolds as in vitro models for niche enrichment of glioblastoma stem-like cells. Biomaterials. 2017;143:149-158 pubmed publisher
Kuang H, Tang Z, Zhang C, Wang Z, Li W, Yang C, et al. Taxifolin Activates the Nrf2 Anti-Oxidative Stress Pathway in Mouse Skin Epidermal JB6 P+ Cells through Epigenetic Modifications. Int J Mol Sci. 2017;18: pubmed publisher
Sheikh M, Malik Y, Zhu X. RA-Induced Transcriptional Silencing of Checkpoint Kinase-2 through Promoter Methylation by Dnmt3b Is Required for Neuronal Differentiation of P19 Cells. J Mol Biol. 2017;429:2463-2473 pubmed publisher
Miozzo F, Arnould H, de Thonel A, Schang A, Sabéran Djoneidi D, Baudry A, et al. Alcohol exposure promotes DNA methyltransferase DNMT3A upregulation through reactive oxygen species-dependent mechanisms. Cell Stress Chaperones. 2018;23:115-126 pubmed publisher
He J, Pei L, Jiang H, Yang W, Chen J, Liang H. Chemoresistance of colorectal cancer to 5-fluorouracil is associated with silencing of the BNIP3 gene through aberrant methylation. J Cancer. 2017;8:1187-1196 pubmed publisher
Iwata R, Maruyama M, Ito T, Nakano Y, Kanemura Y, Koike T, et al. Establishment of a tumor sphere cell line from a metastatic brain neuroendocrine tumor. Med Mol Morphol. 2017;50:211-219 pubmed publisher
Szarc vel Szic K, Declerck K, Crans R, Diddens J, Scherf D, Gerhäuser C, et al. Epigenetic silencing of triple negative breast cancer hallmarks by Withaferin A. Oncotarget. 2017;8:40434-40453 pubmed publisher
Anwar S, Krech T, Hasemeier B, Schipper E, Schweitzer N, Vogel A, et al. hsa-mir-183 is frequently methylated and related to poor survival in human hepatocellular carcinoma. World J Gastroenterol. 2017;23:1568-1575 pubmed publisher
Raciti G, Spinelli R, Desiderio A, Longo M, Parrillo L, Nigro C, et al. Specific CpG hyper-methylation leads to Ankrd26 gene down-regulation in white adipose tissue of a mouse model of diet-induced obesity. Sci Rep. 2017;7:43526 pubmed publisher
Neri F, Rapelli S, Krepelova A, Incarnato D, Parlato C, Basile G, et al. Intragenic DNA methylation prevents spurious transcription initiation. Nature. 2017;543:72-77 pubmed publisher
Wilson R, Biasutto A, Wang L, Fischer R, Baple E, Crosby A, et al. PCNA dependent cellular activities tolerate dramatic perturbations in PCNA client interactions. DNA Repair (Amst). 2017;50:22-35 pubmed publisher
Koh H, Scruggs A, Huang S. Transforming Growth Factor-β1 Increases DNA Methyltransferase 1 and 3a Expression through Distinct Post-transcriptional Mechanisms in Lung Fibroblasts. J Biol Chem. 2016;291:19287-98 pubmed publisher
Daniel F, Alves S, Vieira D, Biz M, Daniel I, Modolo F. Immunohistochemical expression of DNA methyltransferases 1, 3a, and 3b in actinic cheilitis and lip squamous cell carcinomas. J Oral Pathol Med. 2016;45:774-779 pubmed publisher
Li W, Pung D, Su Z, Guo Y, Zhang C, Yang A, et al. Epigenetics Reactivation of Nrf2 in Prostate TRAMP C1 Cells by Curcumin Analogue FN1. Chem Res Toxicol. 2016;29:694-703 pubmed publisher
Hong B, Su Z, Zhang C, Yang Y, Guo Y, Li W, et al. Reserpine Inhibit the JB6 P+ Cell Transformation Through Epigenetic Reactivation of Nrf2-Mediated Anti-oxidative Stress Pathway. AAPS J. 2016;18:659-69 pubmed publisher
Miao C, Qin D, Du C, Ye H, Shi W, Xiong Y, et al. DNMT1 activates the canonical Wnt signaling in rheumatoid arthritis model rats via a crucial functional crosstalk between miR-152 and the DNMT1, MeCP2. Int Immunopharmacol. 2015;28:344-53 pubmed publisher
Kopparapu P, Miranda C, Fogelstrand L, Mishra K, Andersson P, Kanduri C, et al. MCPH1 maintains long-term epigenetic silencing of ANGPT2 in chronic lymphocytic leukemia. FEBS J. 2015;282:1939-52 pubmed publisher
Neri F, Incarnato D, Krepelova A, Rapelli S, Anselmi F, Parlato C, et al. Single-Base Resolution Analysis of 5-Formyl and 5-Carboxyl Cytosine Reveals Promoter DNA Methylation Dynamics. Cell Rep. 2015;10:674-683 pubmed publisher
Guo Y, Shu L, Zhang C, Su Z, Kong A. Curcumin inhibits anchorage-independent growth of HT29 human colon cancer cells by targeting epigenetic restoration of the tumor suppressor gene DLEC1. Biochem Pharmacol. 2015;94:69-78 pubmed publisher
Huichalaf C, Micheloni S, Ferri G, Caccia R, Gabellini D. DNA methylation analysis of the macrosatellite repeat associated with FSHD muscular dystrophy at single nucleotide level. PLoS ONE. 2014;9:e115278 pubmed publisher
Bittencourt D, Lee B, Gao L, Gerke D, Stallcup M. Role of distinct surfaces of the G9a ankyrin repeat domain in histone and DNA methylation during embryonic stem cell self-renewal and differentiation. Epigenetics Chromatin. 2014;7:27 pubmed publisher
Swiech L, Heidenreich M, Banerjee A, Habib N, Li Y, Trombetta J, et al. In vivo interrogation of gene function in the mammalian brain using CRISPR-Cas9. Nat Biotechnol. 2015;33:102-6 pubmed publisher
Wang L, Zhang C, Guo Y, Su Z, Yang Y, Shu L, et al. Blocking of JB6 cell transformation by tanshinone IIA: epigenetic reactivation of Nrf2 antioxidative stress pathway. AAPS J. 2014;16:1214-25 pubmed publisher
Fang M, Ou J, Hutchinson L, Green M. The BRAF oncoprotein functions through the transcriptional repressor MAFG to mediate the CpG Island Methylator phenotype. Mol Cell. 2014;55:904-915 pubmed publisher
Guimarães D, Antunes D, Duarte C, Ferro L, Nunes F. DNA methyltransferase immunohistochemical expression in odontogenic tumours. J Oral Pathol Med. 2015;44:59-66 pubmed publisher
Fang P, Zhang D, Cheng Z, Yan C, Jiang X, Kruger W, et al. Hyperhomocysteinemia potentiates hyperglycemia-induced inflammatory monocyte differentiation and atherosclerosis. Diabetes. 2014;63:4275-90 pubmed publisher
Tajrishi M, Shin J, Hetman M, Kumar A. DNA methyltransferase 3a and mitogen-activated protein kinase signaling regulate the expression of fibroblast growth factor-inducible 14 (Fn14) during denervation-induced skeletal muscle atrophy. J Biol Chem. 2014;289:19985-99 pubmed publisher
Anwar S, Krech T, Hasemeier B, Schipper E, Schweitzer N, Vogel A, et al. Deregulation of RB1 expression by loss of imprinting in human hepatocellular carcinoma. J Pathol. 2014;233:392-401 pubmed publisher
Paredes Gonzalez X, Fuentes F, Su Z, Kong A. Apigenin reactivates Nrf2 anti-oxidative stress signaling in mouse skin epidermal JB6 P + cells through epigenetics modifications. AAPS J. 2014;16:727-35 pubmed publisher
Chuang C, Wang W, Li C, Ko C, Chou Y, Chuu C, et al. The combination of the prodrugs perforin-CEBPD and perforin-granzyme B efficiently enhances the activation of caspase signaling and kills prostate cancer. Cell Death Dis. 2014;5:e1220 pubmed publisher
Calabrese R, Valentini E, Ciccarone F, Guastafierro T, Bacalini M, Ricigliano V, et al. TET2 gene expression and 5-hydroxymethylcytosine level in multiple sclerosis peripheral blood cells. Biochim Biophys Acta. 2014;1842:1130-6 pubmed publisher
Serra R, Fang M, Park S, Hutchinson L, Green M. A KRAS-directed transcriptional silencing pathway that mediates the CpG island methylator phenotype. elife. 2014;3:e02313 pubmed publisher
Neidhart M, Karouzakis E, Jungel A, Gay R, Gay S. Inhibition of spermidine/spermine N1-acetyltransferase activity: a new therapeutic concept in rheumatoid arthritis. Arthritis Rheumatol. 2014;66:1723-33 pubmed publisher
Teneng I, Tellez C, Picchi M, Klinge D, Yingling C, Snider A, et al. Global identification of genes targeted by DNMT3b for epigenetic silencing in lung cancer. Oncogene. 2015;34:621-30 pubmed publisher
Su Z, Zhang C, Lee J, Shu L, Wu T, Khor T, et al. Requirement and epigenetics reprogramming of Nrf2 in suppression of tumor promoter TPA-induced mouse skin cell transformation by sulforaphane. Cancer Prev Res (Phila). 2014;7:319-29 pubmed publisher
Hara E, Ono M, Eguchi T, Kubota S, Pham H, Sonoyama W, et al. miRNA-720 controls stem cell phenotype, proliferation and differentiation of human dental pulp cells. PLoS ONE. 2013;8:e83545 pubmed publisher
Otani J, Kimura H, Sharif J, Endo T, Mishima Y, Kawakami T, et al. Cell cycle-dependent turnover of 5-hydroxymethyl cytosine in mouse embryonic stem cells. PLoS ONE. 2013;8:e82961 pubmed publisher
Watson C, Collier P, Tea I, Neary R, Watson J, Robinson C, et al. Hypoxia-induced epigenetic modifications are associated with cardiac tissue fibrosis and the development of a myofibroblast-like phenotype. Hum Mol Genet. 2014;23:2176-88 pubmed publisher
Kanduri M, Sander B, Ntoufa S, Papakonstantinou N, Sutton L, Stamatopoulos K, et al. A key role for EZH2 in epigenetic silencing of HOX genes in mantle cell lymphoma. Epigenetics. 2013;8:1280-8 pubmed publisher
Giraldo A, DeCourcy K, Ball S, Hylan D, Ayares D. Gene expression of Dnmt1 isoforms in porcine oocytes, embryos, and somatic cells. Cell Reprogram. 2013;15:309-21 pubmed publisher
Sheikh M, Malik Y, Yu H, Lai M, Wang X, Zhu X. Epigenetic regulation of Dpp6 expression by Dnmt3b and its novel role in the inhibition of RA induced neuronal differentiation of P19 cells. PLoS ONE. 2013;8:e55826 pubmed publisher
Anwar S, Albat C, Krech T, Hasemeier B, Schipper E, Schweitzer N, et al. Concordant hypermethylation of intergenic microRNA genes in human hepatocellular carcinoma as new diagnostic and prognostic marker. Int J Cancer. 2013;133:660-70 pubmed publisher
Grau L, Luque Garcia J, Gonzalez Peramato P, Theodorescu D, Palou J, Fernández Gómez J, et al. A quantitative proteomic analysis uncovers the relevance of CUL3 in bladder cancer aggressiveness. PLoS ONE. 2013;8:e53328 pubmed publisher
Anwar S, Krech T, Hasemeier B, Schipper E, Schweitzer N, Vogel A, et al. Loss of imprinting and allelic switching at the DLK1-MEG3 locus in human hepatocellular carcinoma. PLoS ONE. 2012;7:e49462 pubmed publisher
Ji W, Yang L, Yuan J, Yang L, Zhang M, Qi D, et al. MicroRNA-152 targets DNA methyltransferase 1 in NiS-transformed cells via a feedback mechanism. Carcinogenesis. 2013;34:446-53 pubmed publisher
Ip J, Canham P, Choo K, Inaba Y, Jacobs S, Kalitsis P, et al. Normal DNA methylation dynamics in DICER1-deficient mouse embryonic stem cells. PLoS Genet. 2012;8:e1002919 pubmed publisher
Zimmermann N, Zschocke J, Perisic T, Yu S, Holsboer F, Rein T. Antidepressants inhibit DNA methyltransferase 1 through reducing G9a levels. Biochem J. 2012;448:93-102 pubmed publisher
Mohammad F, Pandey G, Mondal T, Enroth S, Redrup L, Gyllensten U, et al. Long noncoding RNA-mediated maintenance of DNA methylation and transcriptional gene silencing. Development. 2012;139:2792-803 pubmed publisher
Bhardwaj A, Song H, Beildeck M, Kerkhofs S, Castoro R, Shanker S, et al. DNA demethylation-dependent AR recruitment and GATA factors drive Rhox5 homeobox gene transcription in the epididymis. Mol Endocrinol. 2012;26:538-49 pubmed publisher
Selvakumar T, Gjidoda A, Hovde S, Henry R. Regulation of human RNA polymerase III transcription by DNMT1 and DNMT3a DNA methyltransferases. J Biol Chem. 2012;287:7039-50 pubmed publisher
Kadriu B, Guidotti A, Chen Y, Grayson D. DNA methyltransferases1 (DNMT1) and 3a (DNMT3a) colocalize with GAD67-positive neurons in the GAD67-GFP mouse brain. J Comp Neurol. 2012;520:1951-64 pubmed publisher
Yang J, Corsello T, Ma Y. Stem cell gene SALL4 suppresses transcription through recruitment of DNA methyltransferases. J Biol Chem. 2012;287:1996-2005 pubmed publisher
Rochlin I, Turbow D, GOMEZ F, Ninivaggi D, Campbell S. Predictive mapping of human risk for West Nile virus (WNV) based on environmental and socioeconomic factors. PLoS ONE. 2011;6:e23280 pubmed publisher
Saito S, Kato J, Hiraoka S, Horii J, Suzuki H, Higashi R, et al. DNA methylation of colon mucosa in ulcerative colitis patients: correlation with inflammatory status. Inflamm Bowel Dis. 2011;17:1955-65 pubmed publisher
Fan H, Cinar M, Phatsara C, Tesfaye D, Tholen E, Looft C, et al. Molecular mechanism underlying the differential MYF6 expression in postnatal skeletal muscle of Duroc and Pietrain breeds. Gene. 2011;486:8-14 pubmed publisher
Dhawan S, Georgia S, Tschen S, Fan G, Bhushan A. Pancreatic ? cell identity is maintained by DNA methylation-mediated repression of Arx. Dev Cell. 2011;20:419-29 pubmed publisher
Nasonkin I, Lazo K, Hambright D, Brooks M, Fariss R, Swaroop A. Distinct nuclear localization patterns of DNA methyltransferases in developing and mature mammalian retina. J Comp Neurol. 2011;519:1914-30 pubmed publisher
Molognoni F, Cruz A, Meliso F, Morais A, Souza C, Xander P, et al. Epigenetic reprogramming as a key contributor to melanocyte malignant transformation. Epigenetics. 2011;6:450-64 pubmed
Yamanaka K, Sakatani M, Kubota K, Balboula A, Sawai K, Takahashi M. Effects of downregulating DNA methyltransferase 1 transcript by RNA interference on DNA methylation status of the satellite I region and in vitro development of bovine somatic cell nuclear transfer embryos. J Reprod Dev. 2011;57:393-402 pubmed
Dalvai M, Mondesert O, Bourdon J, Ducommun B, Dozier C. Cdc25B is negatively regulated by p53 through Sp1 and NF-Y transcription factors. Oncogene. 2011;30:2282-8 pubmed publisher
Teneng I, Montoya Durango D, Quertermous J, Lacy M, Ramos K. Reactivation of L1 retrotransposon by benzo(a)pyrene involves complex genetic and epigenetic regulation. Epigenetics. 2011;6:355-67 pubmed
Daniel F, Rivero E, Modolo F, Lopes T, Salum F. Immunohistochemical expression of DNA methyltransferases 1, 3a and 3b in oral leukoplakias and squamous cell carcinomas. Arch Oral Biol. 2010;55:1024-30 pubmed publisher
Pierard V, Guiguen A, Colin L, Wijmeersch G, Vanhulle C, Van Driessche B, et al. DNA cytosine methylation in the bovine leukemia virus promoter is associated with latency in a lymphoma-derived B-cell line: potential involvement of direct inhibition of cAMP-responsive element (CRE)-binding protein/CRE modulator/activation transcri. J Biol Chem. 2010;285:19434-49 pubmed publisher
Wu Y, Alvarez M, Slamon D, Koeffler P, Vadgama J. Caspase 8 and maspin are downregulated in breast cancer cells due to CpG site promoter methylation. BMC Cancer. 2010;10:32 pubmed publisher
Perisic T, Zimmermann N, Kirmeier T, Asmus M, Tuorto F, Uhr M, et al. Valproate and amitriptyline exert common and divergent influences on global and gene promoter-specific chromatin modifications in rat primary astrocytes. Neuropsychopharmacology. 2010;35:792-805 pubmed publisher
Ye Y, McDevitt M, Guo M, Zhang W, Galm O, Gore S, et al. Progressive chromatin repression and promoter methylation of CTNNA1 associated with advanced myeloid malignancies. Cancer Res. 2009;69:8482-90 pubmed publisher
Hwang C, Song K, Kim C, Choi H, Guo X, Law P, et al. Epigenetic programming of mu-opioid receptor gene in mouse brain is regulated by MeCP2 and Brg1 chromatin remodelling factor. J Cell Mol Med. 2009;13:3591-615 pubmed publisher
Zampieri M, Passananti C, Calabrese R, Perilli M, Corbi N, De Cave F, et al. Parp1 localizes within the Dnmt1 promoter and protects its unmethylated state by its enzymatic activity. PLoS ONE. 2009;4:e4717 pubmed publisher
Yamagata Y, Asada H, Tamura I, Lee L, Maekawa R, Taniguchi K, et al. DNA methyltransferase expression in the human endometrium: down-regulation by progesterone and estrogen. Hum Reprod. 2009;24:1126-32 pubmed publisher
Lin H, Zuo T, Lin C, Kuo C, Liyanarachchi S, Sun S, et al. Breast cancer-associated fibroblasts confer AKT1-mediated epigenetic silencing of Cystatin M in epithelial cells. Cancer Res. 2008;68:10257-66 pubmed publisher
Ko C, Hsu H, Shen M, Chang W, Wang J. Epigenetic silencing of CCAAT/enhancer-binding protein delta activity by YY1/polycomb group/DNA methyltransferase complex. J Biol Chem. 2008;283:30919-32 pubmed publisher
O Hagan H, Mohammad H, Baylin S. Double strand breaks can initiate gene silencing and SIRT1-dependent onset of DNA methylation in an exogenous promoter CpG island. PLoS Genet. 2008;4:e1000155 pubmed publisher
Guastafierro T, Cecchinelli B, Zampieri M, Reale A, Riggio G, Sthandier O, et al. CCCTC-binding factor activates PARP-1 affecting DNA methylation machinery. J Biol Chem. 2008;283:21873-80 pubmed publisher
Xia G, Schneider Stock R, Diestel A, Habold C, Krueger S, Roessner A, et al. Helicobacter pylori regulates p21(WAF1) by histone H4 acetylation. Biochem Biophys Res Commun. 2008;369:526-31 pubmed publisher
Russell D, Betts D. Alternative splicing and expression analysis of bovine DNA methyltransferase 1. Dev Dyn. 2008;237:1051-9 pubmed publisher
Hodge D, Cho E, Copeland T, Guszczynski T, Yang E, Seth A, et al. IL-6 enhances the nuclear translocation of DNA cytosine-5-methyltransferase 1 (DNMT1) via phosphorylation of the nuclear localization sequence by the AKT kinase. Cancer Genomics Proteomics. 2007;4:387-98 pubmed
Ji W, Yang L, Yu L, Yuan J, Hu D, Zhang W, et al. Epigenetic silencing of O6-methylguanine DNA methyltransferase gene in NiS-transformed cells. Carcinogenesis. 2008;29:1267-75 pubmed publisher
Gazin C, Wajapeyee N, Gobeil S, Virbasius C, Green M. An elaborate pathway required for Ras-mediated epigenetic silencing. Nature. 2007;449:1073-7 pubmed
Achour M, Jacq X, Ronde P, Alhosin M, Charlot C, Chataigneau T, et al. The interaction of the SRA domain of ICBP90 with a novel domain of DNMT1 is involved in the regulation of VEGF gene expression. Oncogene. 2008;27:2187-97 pubmed
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product information
master code :
NB300-266
SKU :
NB300-266
product name :
Nestin Antibody (10C2) - BSA Free
unit size :
0.1 ml (also 0.025 ml)
description :
The Nestin Antibody (10C2) - BSA Free from Novus is a mouse monoclonal antibody to Nestin. This antibody reacts with human,mouse,rabbit (negative),rat (negative). The Nestin Antibody (10C2) - BSA Free has been validated for the following applications: IF/IHC,Flow Cytometry,Immunohistochemistry,Western Blot,Immunohistochemistry-Paraffin,Immunocytochemistry/ Immunofluorescence,Immunohistochemistry-Frozen,CyTOF-ready.
target :
Nestin
category :
Primary Antibodies
buffer :
PBS
clonality :
Monoclonal
clone :
10C2
concentration :
2.4 mg/ml
conjugate :
Unconjugated
host :
Mouse
immunogen :
A fragment of the human Nestin protein corresponding to residues 1464-1614. [UniProt P48681]
isotype :
IgG1 Kappa
purity :
Protein G purified
species :
Human,Mouse,Rabbit (Negative),Rat (Negative)
gene symbol :
NES
applications :
IF/IHC,Flow Cytometry,Immunohistochemistry,Western Blot,Immunohistochemistry-Paraffin,Immunocytochemistry/ Immunofluorescence,Immunohistochemistry-Frozen,CyTOF-ready
USD :
469 USD
alt names :
FLJ21841, nestin
storage :
Store at 4C short term. Aliquot and store at -20C long term. Avoid freeze-thaw cycles.
more info or order :
company information
Novus Biologicals
10771 E Easter Ave
Centennial, CO 80112
novus@novusbio.com
https://www.novusbio.com
3037301950
headquarters: USA
Novus Biologicals licenses, manufactures, and markets antibodies to over 20,000 unique targets to support a wide array of research areas. Novus is built on honesty, collaboration and strong relationships and continues to provide quality tools that accelerate research. Every product is backed by our 100% guarantee.