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首页> 外文期刊>Molecular genetics and genomics: MGG >Hst3p, a histone deacetylase, promotes maintenance of Saccharomyces cerevisiae chromosome III lacking efficient replication origins
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Hst3p, a histone deacetylase, promotes maintenance of Saccharomyces cerevisiae chromosome III lacking efficient replication origins

机译:HST3P,一种组蛋白脱乙酰化酶,促进酿酒酵母染色体III的维持缺乏有效的复制起源

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Long gaps between active replication origins probably occur frequently during chromosome replication, but little is known about how cells cope with them. To address this issue, we deleted replication origins from S. cerevisiae chromosome III to create chromosomes with long interorigin gaps and identified mutations that destabilize them [originless fragment maintenance (Ofm) mutations]. ofm6-1 is an allele of HST3, a sirtuin that deacetylates histone H3K56Ac. Hst3p and Hst4p are closely related, but hst4 Delta does not cause an Ofm phenotype. Expressing HST4 under the control of the HST3 promoter suppressed the Ofm phenotype of hst3 Delta, indicating Hst4p, when expressed at the appropriate levels and/or at the correct time, can fully substitute for Hst3p in maintenance of ORI Delta chromosomes. H3K56Ac is the Hst3p substrate critical for chromosome maintenance. H3K56Ac-containing nucleosomes are preferentially assembled into chromatin behind replication forks. Deletion of the H3K56 acetylase and downstream chromatin assembly factors suppressed the Ofm phenotype of hst3, indicating that persistence of H3K56Ac-containing chromatin is deleterious for the maintenance of ORI Delta chromosomes, and experiments with synchronous cultures showed that it is replication of H3K56Ac-containing chromatin that causes chromosome loss. This work shows that while normal chromosomes can tolerate hyperacetylation of H3K56Ac, deacetylation of histone H3K56Ac by Hst3p is required for stable maintenance of a chromosome with a long interorigin gap. The Ofm phenotype is the first report of a chromosome instability phenotype of an hst3 single mutant.
机译:活跃复制起源之间的长间隙可能在染色体复制过程中经常发生,但是关于细胞如何应对它们的知之甚少。为了解决这个问题,我们删除了来自S.Cerevisiae染色体III的复制起源,以产生具有长中间间隙的染色体,并确定了破坏它们的突变[无源片段维护(OFM)突变]。 OFM6-1是HST3的等位基因,一种脱乙酰化组蛋白H3K56AC的SIRTUIN。 HST3P和HST4P密切相关,但HST4 Delta不会引起OFM表型。在HST3启动子的控制下表达HST4抑制了HST3 DELTA的OFM表型,表示HST4P,当在适当的水平和/或在正确时间表达时,可以完全替代HST3P在维持ori delta染色体中。 H3K56AC是HST3P底物对染色体维护至关重要。含H3K56AC的核胚段优先组装成复制叉后面的染色质。缺失H3K56乙酰酶和下游染色质组装因子抑制了HST3的OFM表型,表明含H3K56AC的染色质的持续性对于维持ori delta染色体而有害,并且具有同步培养物的实验表明它是含H3K56AC的染色质的复制这导致染色体损失。该工作表明,虽然正常染色体可以耐受H3K56AC的超乙酰化,但HST3P的组蛋白H3K56Ac的脱乙酰化是稳定的染色体维持染色体的稳定性差距。 OFM表型是HST3单突变体的染色体不稳定表型的第一报告。

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