Anti-EHMT2/G9A抗体- ChIP Grade (ab40542)

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ab40542 被引用在 20 文献中.

  • Ciechomska IA  et al. BIX01294, an inhibitor of histone methyltransferase, induces autophagy-dependent differentiation of glioma stem-like cells. Sci Rep 6:38723 (2016). ChIP ; Human . PubMed: 27934912
  • Rao VK  et al. G9a promotes proliferation and inhibits cell cycle exit during myogenic differentiation. Nucleic Acids Res 44:8129-43 (2016). WB, ChIP ; Mouse . PubMed: 27229136
  • Ow JR  et al. G9a inhibits MEF2C activity to control sarcomere assembly. Sci Rep 6:34163 (2016). IP . PubMed: 27667720
  • Krivega I  et al. Inhibition of G9a methyltransferase stimulates fetal hemoglobin production by facilitating LCR/?-globin looping. Blood 126:665-72 (2015). ChIP . PubMed: 25979948
  • Simon JM  et al. A Role for Widely Interspaced Zinc Finger (WIZ) in Retention of the G9a Methyltransferase on Chromatin. J Biol Chem 290:26088-102 (2015). PubMed: 26338712
  • Koo JW  et al. Epigenetic basis of opiate suppression of Bdnf gene expression in the ventral tegmental area. Nat Neurosci 18:415-22 (2015). ChIP ; Rat . PubMed: 25643298
  • Lei W  et al. Homocysteine Induces Collagen I Expression by Downregulating Histone Methyltransferase G9a. PLoS One 10:e0130421 (2015). WB ; Mouse, Human . PubMed: 26192994
  • Wang Y  et al. Long noncoding RNA derived from CD244 signaling epigenetically controls CD8+ T-cell immune responses in tuberculosis infection. Proc Natl Acad Sci U S A 112:E3883-92 (2015). PubMed: 26150504
  • Groh M  et al. R-loops associated with triplet repeat expansions promote gene silencing in Friedreich ataxia and fragile X syndrome. PLoS Genet 10:e1004318 (2014). ChIP . PubMed: 24787137
  • Gupta-Agarwal S  et al. NMDA receptor- and ERK-dependent histone methylation changes in the lateral amygdala bidirectionally regulate fear memory formation. Learn Mem 21:351-62 (2014). PubMed: 24939839
  • Zheng Z  et al. 5-Aza-2'-deoxycytidine reactivates gene expression via degradation of pRb pocket proteins. FASEB J 26:449-59 (2012). PubMed: 21990374
  • Cong R  et al. Interaction of nucleolin with ribosomal RNA genes and its role in RNA polymerase I transcription. Nucleic Acids Res 40:9441-54 (2012). PubMed: 22859736
  • Bittencourt D  et al. G9a functions as a molecular scaffold for assembly of transcriptional coactivators on a subset of Glucocorticoid Receptor target genes. Proc Natl Acad Sci U S A 109:19673-8 (2012). ChIP ; Human . PubMed: 23151507
  • Purcell DJ  et al. A Distinct Mechanism for Coactivator versus Corepressor Function by Histone Methyltransferase G9a in Transcriptional Regulation. J Biol Chem 286:41963-71 (2011). ChIP ; Human . PubMed: 21984853
  • Qiang M  et al. Histone H3K9 modifications are a local chromatin event involved in ethanol-induced neuroadaptation of the NR2B gene. Epigenetics 6:1095-104 (2011). PubMed: 21814037
  • Fang R  et al. Human LSD2/KDM1b/AOF1 Regulates Gene Transcription by Modulating Intragenic H3K4me2 Methylation. Mol Cell 39:222-233 (2010). ChIP . PubMed: 20670891
  • Chen X  et al. The NF-kappaB factor RelB and histone H3 lysine methyltransferase G9a directly interact to generate epigenetic silencing in endotoxin tolerance. J Biol Chem 284:27857-65 (2009). IP ; Human . PubMed: 19690169
  • Metzger E  et al. Phosphorylation of histone H3 at threonine 11 establishes a novel chromatin mark for transcriptional regulation. Nat Cell Biol 10:53-60 (2008). ChIP . PubMed: 18066052
  • Wu LP  et al. HDAC inhibitor depsipeptide activates silenced genes through decreasing both CpG and H3K9 methylation on the promoter. Mol Cell Biol : (2008). PubMed: 18332107
  • Stewart MD  et al. Dynamic Regulation of Histone Modifications in Xenopus Oocytes through Histone Exchange. Mol Cell Biol 26:6890-901 (2006). PubMed: 16943430