Anti-RNA polymerase II CTD repeat YSPTSPS (phospho S5)抗体- ChIP Grade (ab5131)

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ab5131 被引用在 224 文献中.

  • Deane CAS & Brown IR Differential Targeting of Hsp70 Heat Shock Proteins HSPA6 and HSPA1A with Components of a Protein Disaggregation/Refolding Machine in Differentiated Human Neuronal Cells following Thermal Stress. Front Neurosci 11:227 (2017). ICC/IF ; Human . PubMed: 28484369
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  • Xiao X  et al. Epigenetic repression of Krüppel-like factor 4 through Dnmt1 contributes to EMT in renal fibrosis. Int J Mol Med 35:1596-602 (2015). ChIP ; Human . PubMed: 25892014
  • Magbanua JP  et al. A variably occupied CTCF binding site in the ultrabithorax gene in the Drosophila bithorax complex. Mol Cell Biol 35:318-30 (2015). PubMed: 25368383
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  • DeNicola GM  et al. NRF2 regulates serine biosynthesis in non-small cell lung cancer. Nat Genet N/A:N/A (2015). ChIP ; Mouse . PubMed: 26482881
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  • Wei H  et al. Unique subcellular distribution of RPB1 with a phosphorylated C-terminal domain (CTD) in mouse oocytes during meiotic division and its relationship with chromosome separation. J Reprod Dev 61:541-8 (2015). WB, IHC-P ; Mouse . PubMed: 26346254
  • Zhou J  et al. H19 lncRNA alters DNA methylation genome wide by regulating S-adenosylhomocysteine hydrolase. Nat Commun 6:10221 (2015). PubMed: 26687445
  • Saintamand A  et al. Elucidation of IgH 3' region regulatory role during class switch recombination via germline deletion. Nat Commun 6:7084 (2015). ChIP ; Mouse . PubMed: 25959683
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  • Lee JE  et al. Defective Hfp-dependent transcriptional repression of dMYC is fundamental to tissue overgrowth in Drosophila XPB models. Nat Commun 6:7404 (2015). ChIP ; Drosophila melanogaster . PubMed: 26074141
  • Kessler R  et al. dDsk2 regulates H2Bub1 and RNA polymerase II pausing at dHP1c complex target genes. Nat Commun 6:7049 (2015). ChIP ; Drosophila melanogaster . PubMed: 25916810
  • Tomita S  et al. A cluster of noncoding RNAs activates the ESR1 locus during breast cancer adaptation. Nat Commun 6:6966 (2015). ChIP ; Human . PubMed: 25923108
  • Laitem C  et al. CDK9 inhibitors define elongation checkpoints at both ends of RNA polymerase II-transcribed genes. Nat Struct Mol Biol 22:396-403 (2015). WB, ChIP ; Human . PubMed: 25849141
  • 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
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  • Wallace HA  et al. Condensin II Regulates Interphase Chromatin Organization Through the Mrg-Binding Motif of Cap-H2. G3 (Bethesda) 5:803-17 (2015). PubMed: 25758823
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  • Singh AP & Archer TK Analysis of the SWI/SNF chromatin-remodeling complex during early heart development and BAF250a repression cardiac gene transcription during P19 cell differentiation. Nucleic Acids Res 42:2958-75 (2014). ChIP . PubMed: 24335282
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  • Dottermusch-Heidel C  et al. H3K79 methylation directly precedes the histone-to-protamine transition in mammalian spermatids and is sensitive to bacterial infections. Andrology 2:655-65 (2014). ICC/IF ; Human . PubMed: 25079683
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  • Amatori S  et al. PAT-ChIP coupled with laser microdissection allows the study of chromatin in selected cell populations from paraffin-embedded patient samples. Epigenetics Chromatin 7:18 (2014). ChIP ; Mouse . PubMed: 25104973
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  • Taylor BJ  et al. Active RNAP pre-initiation sites are highly mutated by cytidine deaminases in yeast, with AID targeting small RNA genes. Elife 3:N/A (2014). ChIP ; Saccharomyces cerevisiae . PubMed: 25237741
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  • Kreher S  et al. Mapping of transcription factor motifs in active chromatin identifies IRF5 as key regulator in classical Hodgkin lymphoma. Proc Natl Acad Sci U S A 111:E4513-22 (2014). PubMed: 25288773
  • Henriquez B  et al. Ezh1 and Ezh2 differentially regulate PSD-95 gene transcription in developing hippocampal neurons. Mol Cell Neurosci 57:130-43 (2013). ChIP ; Rat . PubMed: 23932971
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  • Eun B  et al. Promoter cross-talk via a shared enhancer explains paternally biased expression of Nctc1 at the Igf2/H19/Nctc1 imprinted locus. Nucleic Acids Res 41:817-26 (2013). IP ; Human . PubMed: 23221643
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  • Eun B  et al. The Igf2/H19 muscle enhancer is an active transcriptional complex. Nucleic Acids Res 41:8126-34 (2013). PubMed: 23842673
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  • Largeot A  et al. Symplekin, a polyadenylation factor, prevents MOZ and MLL activity on HOXA9 in hematopoietic cells. Biochim Biophys Acta 1833:3054-3063 (2013). PubMed: 23994619
  • Subramanian V  et al. H2A.Z acidic patch couples chromatin dynamics to regulation of gene expression programs during ESC differentiation. PLoS Genet 9:e1003725 (2013). ChIP . PubMed: 23990805
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  • Attema JL  et al. Identification of an Enhancer That Increases miR-200b~200a~429 Gene Expression in Breast Cancer Cells. PLoS One 8:e75517 (2013). PubMed: 24086551
  • Millán-Zambrano G  et al. The prefoldin complex regulates chromatin dynamics during transcription elongation. PLoS Genet 9:e1003776 (2013). ChIP ; Saccharomyces cerevisiae . PubMed: 24068951
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  • Park D  et al. Widespread misinterpretable ChIP-seq bias in yeast. PLoS One 8:e83506 (2013). ChIP ; Saccharomyces cerevisiae . PubMed: 24349523
  • Berlivet S  et al. Clustering of tissue-specific sub-TADs accompanies the regulation of HoxA genes in developing limbs. PLoS Genet 9:e1004018 (2013). ChIP ; Mouse . PubMed: 24385922
  • Wagner M  et al. NCOA3 is a selective co-activator of estrogen receptor a-mediated transactivation of PLAC1 in MCF-7 breast cancer cells. BMC Cancer 13:570 (2013). ChIP ; Human . PubMed: 24304549
  • Valin A  et al. Transcription factor Sp3 represses expression of p21CIP¹ via inhibition of productive elongation by RNA polymerase II. Mol Cell Biol 33:1582-93 (2013). PubMed: 23401853
  • Ho Y  et al. Distinct chromatin configurations regulate the initiation and the maintenance of hGH gene expression. Mol Cell Biol 33:1723-34 (2013). PubMed: 23428872
  • Sauter KA  et al. The function of the conserved regulatory element within the second intron of the mammalian Csf1r locus. PLoS One 8:e54935 (2013). IP . PubMed: 23383005
  • Singh SK  et al. GANP regulates recruitment of AID to immunoglobulin variable regions by modulating transcription and nucleosome occupancy. Nat Commun 4:1830 (2013). PubMed: 23652018
  • Miao F  et al. RNA-sequencing analysis of high glucose-treated monocytes reveals novel transcriptome signatures and associated epigenetic profiles. Physiol Genomics 45:287-99 (2013). ChIP ; Human . PubMed: 23386205
  • Walker SR  et al. STAT5 outcompetes STAT3 to regulate the expression of the oncogenic transcriptional modulator BCL6. Mol Cell Biol 33:2879-90 (2013). PubMed: 23716595
  • Grøntved L  et al. C/EBP maintains chromatin accessibility in liver and facilitates glucocorticoid receptor recruitment to steroid response elements. EMBO J 32:1568-83 (2013). PubMed: 23665916
  • Schang AL  et al. GATA2-induced silencing and LIM-homeodomain protein-induced activation are mediated by a bi-functional response element in the rat GnRH receptor gene. Mol Endocrinol 27:74-91 (2013). PubMed: 23211524
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  • Pérez-Montero S  et al. The embryonic linker histone H1 variant of Drosophila, dBigH1, regulates zygotic genome activation. Dev Cell 26:578-90 (2013). PubMed: 24055651
  • Bai X  et al. TiF1-gamma plays an essential role in murine hematopoiesis and regulates transcriptional elongation of erythroid genes. Dev Biol 373:422-30 (2013). WB ; Mouse . PubMed: 23159334
  • Goula AV  et al. Transcription elongation and tissue-specific somatic CAG instability. PLoS Genet 8:e1003051 (2012). ChIP . PubMed: 23209427
  • Balter BB  et al. Mice lacking Sµ tandem repeats maintain RNA polymerase patterns but exhibit histone modification pattern shifts linked to class switch site locations. Mol Immunol 52:1-8 (2012). ChIP . PubMed: 22580346
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  • Bender MA  et al. The hypersensitive sites of the murine ß-globin locus control region act independently to affect nuclear localization and transcriptional elongation. Blood 119:3820-7 (2012). PubMed: 22378846
  • Mitchell JA  et al. Nuclear RNA sequencing of the mouse erythroid cell transcriptome. PLoS One 7:e49274 (2012). ChIP . PubMed: 23209567
  • Bhatt S  et al. Phosphorylation by p38 mitogen-activated protein kinase promotes estrogen receptor a turnover and functional activity via the SCF(Skp2) proteasomal complex. Mol Cell Biol 32:1928-43 (2012). PubMed: 22431515
  • Kohler KM  et al. Identification of core DNA elements that target somatic hypermutation. J Immunol 189:5314-26 (2012). ChIP . PubMed: 23087403
  • Zhang W  et al. Bromodomain-containing protein 4 (BRD4) regulates RNA polymerase II serine 2 phosphorylation in human CD4+ T cells. J Biol Chem 287:43137-55 (2012). PubMed: 23086925
  • Watanabe T  et al. Higher-order chromatin regulation and differential gene expression in the human tumor necrosis factor/lymphotoxin locus in hepatocellular carcinoma cells. Mol Cell Biol 32:1529-41 (2012). ChIP . PubMed: 22354988
  • Tan PY  et al. Integration of regulatory networks by NKX3-1 promotes androgen-dependent prostate cancer survival. Mol Cell Biol 32:399-414 (2012). PubMed: 22083957
  • Ding Y  et al. ATX1-generated H3K4me3 is required for efficient elongation of transcription, not initiation, at ATX1-regulated genes. PLoS Genet 8:e1003111 (2012). ChIP . PubMed: 23284292
  • Pinter SF  et al. Spreading of X chromosome inactivation via a hierarchy of defined Polycomb stations. Genome Res 22:1864-76 (2012). PubMed: 22948768
  • Ding Y  et al. Multiple exposures to drought 'train' transcriptional responses in Arabidopsis. Nat Commun 3:740 (2012). PubMed: 22415831
  • Lloret-Llinares M  et al. dKDM5/LID regulates H3K4me3 dynamics at the transcription-start site (TSS) of actively transcribed developmental genes. Nucleic Acids Res 40:9493-505 (2012). PubMed: 22904080
  • Thorne JL  et al. Heterochromatin protein 1 gamma and I?B kinase alpha interdependence during tumour necrosis factor gene transcription elongation in activated macrophages. Nucleic Acids Res : (2012). ChIP ; Mouse . PubMed: 22649058
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