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The chromatin remodeler Chd1 regulates cohesin in budding yeast and humans

机译:染色质重塑剂Chd1调节发芽酵母和人类中的黏着蛋白

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摘要

Chd1 is a chromatin remodeler that is involved in nucleosome positioning and transcription. Deletion of CHD1 is a frequent event in prostate cancer. The Structural Maintenance of Chromosome (SMC) complex cohesin mediates long-range chromatin interactions and is involved in maintaining genome stability. We provide new evidence that Chd1 is a regulator of cohesin. In the yeast S. cerevisiae, Chd1 is not essential for viability. We show that deletion of the gene leads to a defect in sister chromatid cohesion and in chromosome morphology. Chl1 is a non-essential DNA helicase that has been shown to regulate cohesin loading. Surprisingly, co-deletion of CHD1 and CHL1 results in an additive cohesion defect but partial suppression of the chromosome structure phenotype. We found that the cohesin regulator Pds5 is overexpressed when Chd1 and Chl1 are deleted. However, Pds5 expression is reduced to wild type levels when both genes are deleted. Finally, we show a correlation in the expression of CHD1 and cohesin genes in prostate cancer patients. Furthermore, we show that overexpression of cohesin subunits is correlated with the aggressiveness of the tumor. The biological roles of the interplay between Chd1, Chl1 and SMCs are discussed.
机译:Chd1是染色质重塑剂,参与核小体的定位和转录。 CHD1的删除是前列腺癌中的常见事件。染色体(SMC)复杂粘附素的结构维护介导了长距离的染色质相互作用,并参与维持基因组稳定性。我们提供了新的证据,证明Chd1是粘附素的调节剂。在酵母酿酒酵母中,Chd1对生存力不是必需的。我们显示该基因的删除导致姐妹染色单体凝聚力和染色体形态的缺陷。 Chl1是一种非必需的DNA解旋酶,已被证明可以调节黏着素的加载。出乎意料的是,CHD1和CHL1的共同删除导致加成内聚缺陷,但部分抑制了染色体结构表型。我们发现当删除Chd1和Chl1时,黏附素调节剂Pds5过表达。但是,当两个基因都缺失时,Pds5表达降低到野生型水平。最后,我们显示了前列腺癌患者中CHD1和粘着蛋白基因表达的相关性。此外,我们表明cohesin亚基的过表达与肿瘤的侵袭性相关。讨论了Chd1,Chl1和SMC之间相互作用的生物学作用。

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