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Dependency of Heterochromatin Domains on Replication Factors

机译:异染色质域对复制因子的依赖性

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摘要

Chromatin structure regulates both genome expression and dynamics in eukaryotes, where large heterochromatic regions are epigenetically silenced through the methylation of histone H3K9, histone deacetylation, and the assembly of repressive complexes. Previous genetic screens with the fission yeast Schizosaccharomyces pombe have led to the identification of key enzymatic activities and structural constituents of heterochromatin. We report here on additional factors discovered by screening a library of deletion mutants for silencing defects at the edge of a heterochromatic domain bound by its natural boundary—the IR-R+ element—or by ectopic boundaries. We found that several components of the DNA replication progression complex (RPC), including Mrc1/Claspin, Mcl1/Ctf4, Swi1/Timeless, Swi3/Tipin, and the FACT subunit Pob3, are essential for robust heterochromatic silencing, as are the ubiquitin ligase components Pof3 and Def1, which have been implicated in the removal of stalled DNA and RNA polymerases from chromatin. Moreover, the search identified the cohesin release factor Wpl1 and the forkhead protein Fkh2, both likely to function through genome organization, the Ssz1 chaperone, the Fkbp39 proline cis-trans isomerase, which acts on histone H3P30 and P38 in Saccharomyces cerevisiae, and the chromatin remodeler Fft3. In addition to their effects in the mating-type region, to varying extents, these factors take part in heterochromatic silencing in pericentromeric regions and telomeres, revealing for many a general effect in heterochromatin. This list of factors provides precious new clues with which to study the spatiotemporal organization and dynamics of heterochromatic regions in connection with DNA replication.
机译:染色质结构调节真核生物中的基因组表达和动力学,在真核生物中,大的异色区域通过组蛋白H3K9的甲基化,组蛋白的去乙酰化和阻抑复合物的组装而在表观遗传上沉默。以前使用裂殖酵母裂殖酵母的遗传筛选已导致鉴定关键酶活性和异染色质的结构成分。我们在此报告了通过筛选缺失突变体文库以沉默其自然边界(IR-R + 元素)或异位边界所约束的异色域边缘的缺陷而发现的其他因素。我们发现DNA复制进行复合体(RPC)的几个组件,包括Mrc1 / Claspin,Mcl1 / Ctf4,Swi1 / Timeless,Swi3 / Tipin和FACT亚基Pob3,对于泛滥的异色沉默是必不可少的,泛素连接酶也是组分Pof3和Def1,它们与从染色质中清除停滞的DNA和RNA聚合酶有关。此外,该搜索还确定了可能通过基因组组织起作用的黏附素释放因子Wpl1和前叉蛋白Fkh2,Ssz1分子伴侣,Fkbp39脯氨酸顺反异构酶(其作用于酿酒酵母中的组蛋白H3P30和P38)以及染色质重塑器Fft3。除了它们在交配型区域中的作用之外,这些因素还不同程度地参与着丝粒区域和端粒的异源沉默,从而揭示了异染色质的许多一般作用。这些因素清单提供了宝贵的新线索,可用于研究与DNA复制有关的异色区域的时空组织和动力学。

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