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首页> 外文期刊>Epigenetics: official journal of the DNA Methylation Society >The histone methyltransferases Set5 and Set1 have overlapping functions in gene silencing and telomere maintenance
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The histone methyltransferases Set5 and Set1 have overlapping functions in gene silencing and telomere maintenance

机译:组蛋白甲基转移酶Set5和Set1在基因沉默和端粒维护中具有重叠的功能

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摘要

Genes adjacent to telomeres are subject to transcriptional repression mediated by an integrated set of chromatin modifying and remodeling factors. The telomeres of Saccharomyces cerevisiae have served as a model for dissecting the function of diverse chromatin proteins in gene silencing, and their study has revealed overlapping roles for many chromatin proteins in either promoting or antagonizing gene repression. The H3K4 methyltransferase Set1, which is commonly linked to transcriptional activation, has been implicated in telomere silencing. Set5 is an H4 K5, K8, and K12 methyltransferase that functions with Set1 to promote repression at telomeres. Here, we analyzed the combined role for Set1 and Set5 in gene expression control at native yeast telomeres. Our data reveal that Set1 and Set5 promote a Sir protein-independent mechanism of repression that may primarily rely on regulation of H4K5ac and H4K8ac at telomeric regions. Furthermore, cells lacking both Set1 and Set5 have highly correlated transcriptomes to mutants in telomere maintenance pathways and display defects in telomere stability, linking their roles in silencing to protection of telomeres. Our data therefore provide insight into and clarify potential mechanisms by which Set1 contributes to telomere silencing and shed light on the function of Set5 at telomeres.
机译:邻近端粒邻近的基因受转录抑制由一体的染色质修饰和重塑因子介导的转录抑制。 Saccharomyces Cerevisiae的端粒作为解剖不同染色质蛋白在基因沉默中的功能的模型,其研究揭示了许多染色质蛋白的重叠作用,促进或拮抗基因抑制。通常与转录激活相同的H3K4甲基转移酶Set1已涉及端粒沉默。 Set5是H4 K5,K8和K12甲基转移酶,其用Set1功能,以促进端粒的抑制。在这里,我们分析了天然酵母端粒的基因表达控制中Set1和Set5的组合作用。我们的数据显示Set1和Set5促进了蛋白质无关的抑制机制,这些抑制机制可以主要依赖于端粒区域的H4K5AC和H4K8Ac的调节。此外,缺乏SET1和SET5的细胞对端粒维持途径中的突变体具有高度相关的转录om,并在端粒稳定性中显示缺陷,将其作用与沉默的粘性联系起来以保护端粒。因此,我们的数据提供了深入的洞察力和澄清了Set1在端粒仪中为Set5的功能有助于端粒沉默和脱落的潜在机制。

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