首页> 外文期刊>Nucleic Acids Research >Recruitment and delivery of the fission yeast Rst2 transcription factor via a local genome structure counteracts repression by Tup1-family corepressors
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Recruitment and delivery of the fission yeast Rst2 transcription factor via a local genome structure counteracts repression by Tup1-family corepressors

机译:通过局部基因组结构募集和递送裂变酵母RST2转录因子Tup1-Family CoreCressors的抑制

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摘要

Transcription factors (TFs) determine the transcription activity of target genes and play a central role in controlling the transcription in response to various environmental stresses. Three dimensional genome structures such as local loops play a fundamental role in the regulation of transcription, although the link between such structures and the regulation of TF binding to cis-regulatory elements remains to be elucidated. Here, we show that during transcriptional activation of the fission yeast fbp1 gene, binding of Rst2 (a critical C2H2 zinc-finger TF) is mediated by a local loop structure. During fbp1 activation, Rst2 is first recruited to upstream-activating sequence 1 (UAS1), then it subsequently binds to UAS2 (a critical cis-regulatory site located approximately 600 base pairs downstream of UAS1) through a loop structure that brings UAS1 and UAS2 into spatially close proximity. Tup11/12 (the Tup-family corepressors) suppress direct binding of Rst2 to UAS2, but this suppression is counteracted by the recruitment of Rst2 at UAS1 and following delivery to UAS2 through a loop structure. These data demonstrate a previously unappreciated mechanism for the recruitment and expansion of TF-DNA interactions within a promoter mediated by local three-dimensional genome structures and for timely TF-binding via counteractive regulation by the Tup-family corepressors.
机译:转录因子(TFS)确定靶基因的转录活性,并在响应各种环境压力控制转录方面发挥着核心作用。诸如局部环的三维基因组结构在转录的调节中起着基本作用,尽管这种结构与TF与顺式调节元件的TF结合的调节仍有待阐明的是仍将阐明。这里,我们表明,在裂变酵母FBP1基因的转录激活期间,RST2(关键C 2 H 2锌 - 手指TF)的结合由局部环结构介导。在FBP1激活期间,首先招募到上游激活序列1(UA1)的RST2,然后通过将UAS1和UA2带入的环结构绑定到UAS2(位于UA1下游约600个碱基对的临界CIS-CONSULMORY站点)空间近距离。 Tup11 / 12(Tup-Family CoreStrullors)抑制RST2至UAs2的直接绑定,但是通过uas1在uas1和通过环结构递送到uas2之后,通过循环结构来抵消这种抑制。这些数据证明了先前未被解冻的机制,用于募集和扩展由局部三维基因组结构介导的启动子内的TF-DNA相互作用,并通过TUP-Family CoreCressors的抵消调节及时TF结合。

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