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Yeast Ume6p repressor permits activator binding but restricts TBP binding at the HOP1 promoter

机译:酵母Ume6p阻遏物允许激活剂结合,但限制HBP1启动子上的TBP结合

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摘要

Ume6p plays essential roles in the regulation of early meiotic genes in Saccharomyces cerevisiae. Ume6p exerts repression via recruitment of the Sin3p-Rpd3p histone deacetylase and Isw2p chromatin remodeling complexes. The transcriptional step that is ultimately inhibited by Ume6p is unknown. Here, in vivo footprinting shows that transcriptional activators Hap1p and Abf1p occupy upstream sites in repressed and derepressed promoters. In contrast, chromatin immunoprecipitation shows that TATA box-binding protein (TBP)-promoter binding is reduced upon repression of HOP1. Fusion of TBP to a zinc cluster DNA binding domain relieves repression at a HOP1 promoter modified to include the zinc cluster target site. We suggest that TBP binding is inhibited through chromatin modification by the Sin3p-Rpd3p and Isw2p complexes recruited by Ume6p.
机译:Ume6p在酿酒酵母的早期减数分裂基因的调控中起着至关重要的作用。 Ume6p通过募集Sin3p-Rpd3p组蛋白脱乙酰基酶和Isw2p染色质重塑复合物发挥抑制作用。最终受Ume6p抑制的转录步骤是未知的。在这里,体内足迹显示转录激活因子Hap1p和Abf1p占据了被抑制和被抑制的启动子的上游位点。相比之下,染色质免疫沉淀显示TATA盒结合蛋白(TBP)-启动子的结合在抑制HOP1后减少。 TBP与锌簇DNA结合结构域的融合减轻了在修饰为包括锌簇靶位点的HOP1启动子处的阻遏。我们建议TBP结合是通过染色质修饰被Ume6p募集的Sin3p-Rpd3p和Isw2p复合物抑制的。

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