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Histone levels are regulated by phosphorylation and ubiquitylation-dependent proteolysis.

机译:组蛋白水平通过磷酸化和泛素化依赖性蛋白水解来调节。

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Histone levels are tightly regulated to prevent harmful effects such as genomic instability and hypersensitivity to DNA-damaging agents due to the accumulation of these highly basic proteins when DNA replication slows down or stops. Although chromosomal histones are stable, excess (non-chromatin bound) histones are rapidly degraded in a Rad53 (radiation sensitive 53) kinase-dependent manner in Saccharomyces cerevisiae. Here we demonstrate that excess histones associate with Rad53 in vivo and seem to undergo modifications such as tyrosine phosphorylation and polyubiquitylation, before their proteolysis by the proteasome. We have identified the Tyr 99 residue of histone H3 as being critical for the efficient ubiquitylation and degradation of this histone. We have also identified the ubiquitin conjugating enzymes (E2) Ubc4 and Ubc5, as well as the ubiquitin ligase (E3) Tom1 (temperature dependent organization in mitotic nucleus 1), as enzymes involved in the ubiquitylation of excess histones. Regulated histone proteolysis has major implications for the maintenance of epigenetic marks on chromatin, genomic stability and the packaging of sperm DNA.
机译:严格调节组蛋白水平,以防止由于DNA复制减慢或停止时这些高度碱性蛋白的积累而引起的有害影响,例如基因组不稳定和对DNA破坏剂的超敏性。尽管染色体组蛋白是稳定的,但是在酿酒酵母中,过量的(未结合染色质的)组蛋白以Rad53(辐射敏感的53)激酶依赖性方式迅速降解。在这里,我们证明了过量的组蛋白在体内与Rad53缔合,并且在被蛋白酶体进行蛋白水解之前似乎经历了酪氨酸磷酸化和多泛素化等修饰。我们已经鉴定出组蛋白H3的Tyr 99残基对于该组蛋白的有效泛素化和降解至关重要。我们还确定了泛素结合酶(E2)Ubc4和Ubc5,以及泛素连接酶(E3)Tom1(有丝分裂核1中的温度依赖性组织),是参与过量组蛋白泛素化的酶。调节的组蛋白水解对于维持染色质的表观遗传标记,基因组稳定性和精子DNA包装具有重要意义。

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