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The RSC chromatin remodeling complex has a crucial role in the complete remodeler set for yeast PHO5 promoter opening

机译:RSC染色质重塑复合体在酵母PHO5启动子开放的完整重塑器中起着至关重要的作用

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摘要

Although yeast PHO5 promoter chromatin opening is a founding model for chromatin remodeling, the complete set of involved remodelers remained unknown for a long time. The SWI/SNF and INO80 remodelers cooperate here, but nonessentially, and none of the many tested single or combined remodeler gene mutations could prevent PHO5 promoter opening. RSC, the most abundant and only remodeler essential for viability, was a controversial candidate for the unrecognized remodeling activity but unassessed in vivo. Now we show that remodels the structure of chromatin (RSC) is crucially involved in PHO5 promoter opening. Further, the isw1 chd1 double deletion also delayed chromatin remodeling. Strikingly, combined absence of RSC and Isw1/Chd1 or Snf2 abolished for the first time promoter opening on otherwise sufficient induction in vivo. Together with previous findings, we recognize now a surprisingly complex network of five remodelers (RSC, SWI/SNF, INO80, Isw1 and Chd1) from four subfamilies (SWI/SNF, INO80, ISWI and CHD) as involved in PHO5 promoter chromatin remodeling. This is likely the first described complete remodeler set for a physiological chromatin transition. RSC was hardly involved at the coregulated PHO8 or PHO84 promoters despite cofactor recruitment by the same transactivator and RSC’s presence at all three promoters. Therefore, promoter-specific chromatin rather than transactivators determine remodeler requirements.
机译:尽管酵母PHO5启动子染色质开放是染色质重塑的基础模型,但长期以来仍不清楚完整的相关重塑剂。 SWI / SNF和INO80重塑剂在这里合作,但不是必需的,许多经过测试的单一或组合重塑剂基因突变均不能阻止PHO5启动子的打开。 RSC是生存能力最丰富且唯一的重塑剂,它是尚未被认可的重塑活性但在体内尚未评估的有争议的候选药物。现在我们表明,重塑染色质(RSC)的结构至关重要地参与PHO5启动子的开放。此外,isw1 chd1的双重缺失也延迟了染色质重塑。令人惊讶的是,RSC和Isw1 / Chd1或Snf2的联合缺失首次消除了启动子在体内的充分诱导下的首次打开。连同以前的发现,我们现在认识到来自PHO5启动子染色质重塑的四个亚家族(SWI / SNF,INO80,ISWI和CHD)的五个重塑剂(RSC,SWI / SNF,INO80,Isw1和Chd1)的复杂网络令人惊讶。这很可能是第一个描述的完整的重塑剂,用于生理染色质过渡。尽管同一个反式激活因子募集了辅因子,并且RSC在所有三个启动子中均存在,但RSC几乎没有参与调控的PHO8或PHO84启动子。因此,启动子特异性染色质而不是反式激活因子决定了重塑剂的需求。

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