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Transcription cofactor PC4 plays essential roles in collaboration with the small subunit of general transcription factor TFIIE

机译:转录辅助因子PC4在与一般转录因子TFIIE的小亚基协同作用中起重要作用

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In eukaryotes, positive cofactor 4 (PC4) stimulates activator-dependent transcription by facilitating transcription initiation and the transition from initiation to elongation. It also forms homodimers and binds to single-stranded DNA and various transcriptional activators, including the general transcription factor TFIIH. In this study, we further investigated PC4 from Homo sapiens and the nematode Caenorhabditis elegans (hPC4 and cePC4, respectively). hPC4 strongly stimulated transcription on a linearized template, whereas it alleviated transcription on a supercoiled template. Transcriptional stimulation by PC4 was also alleviated by increasing the amount of TFIID. GST pull-down studies with general transcription factors indicated that both hPC4 and cePC4 bind strongly to TFIIB, TFIIE beta, TFIIF alpha, TFIIF beta and TFIIH XPB subunits and weakly to TBP and TFIIH p62. However, only hPC4 bound to CDK7. The effect of each PC4 on transcription was studied in combination with TFIIE beta. hPC4 stimulated both basal and activated transcription, whereas cePC4 primarily stimulated activated transcription, especially in the presence of TFIIE beta from C. elegans. Finally, hPC4 bound to the C-terminal region of hTFIIE beta adjacent to the basic region. These results indicate that PC4 plays essential roles in the transition step from transcription initiation to elongation by binding to melted DNA in collaboration with TFIIE beta.
机译:在真核生物中,阳性辅助因子4(PC4)通过促进转录起始以及从起始到延伸的过渡来刺激激活因子依赖性转录。它还形成同型二聚体并与单链DNA和各种转录激活剂(包括通用转录因子TFIIH)结合。在这项研究中,我们进一步研究了来自智人和线虫秀丽隐杆线虫(分别为hPC4和cePC4)的PC4。 hPC4强烈刺激线性化模板上的转录,而它减轻了超螺旋模板上的转录。通过增加TFIID的量,也减轻了PC4对转录的刺激。使用一般转录因子进行的GST下拉研究表明,hPC4和cePC4均与TFIIB,TFIIE beta,TFIIF alpha,TFIIF beta和TFIIH XPB亚基牢固结合,而与TBP和TFIIH p62弱结合。但是,只有hPC4绑定到CDK7。与TFIIE beta结合研究了每种PC4对转录的影响。 hPC4刺激基础和激活的转录,而cePC4主要刺激激活的转录,尤其是在存在秀丽隐杆线虫的TFIIE beta的情况下。最后,hPC4结合到hTFIIE beta的C端区域,该区域与基本区域相邻。这些结果表明,PC4通过与TFIIE beta结合与融化的DNA结合,在从转录起始到延长的过渡步骤中起着至关重要的作用。

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