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LSD1 prevents aberrant heterochromatin formation in

机译:LSD1防止异常的异铬甜素形成

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摘要

Heterochromatin is a specialized form of chromatin that restricts access to DNA and inhibits genetic processes, including transcription and recombination. In Neurospora crassa, constitutive heterochromatin is characterized by trimethylation of lysine 9 on histone H3, hypoacetylation of histones, and DNA methylation. We explored whether the conserved histone demethylase, lysine-specific demethylase 1 (LSD1), regulates heterochromatin in Neurospora, and if so, how. Though LSD1 is implicated in heterochromatin regulation, its function is inconsistent across different systems; orthologs of LSD1 have been shown to either promote or antagonize heterochromatin expansion by removing H3K4me or H3K9me respectively. We identify three members of the Neurospora LSD complex (LSDC): LSD1, PHF1, and BDP-1. Strains deficient for any of these proteins exhibit variable spreading of heterochromatin and establishment of new heterochromatin domains throughout the genome. Although establishment of H3K9me3 is typically independent of DNA methylation in Neurospora, instances of DNA methylation-dependent H3K9me3 have been found outside regions of canonical heterochromatin. Consistent with this, the hyper-H3K9me3 phenotype of Δlsd1 strains is dependent on the presence of DNA methylation, as well as HCHC-mediated histone deacetylation, suggesting that spreading is dependent on some feedback mechanism. Altogether, our results suggest LSD1 works in opposition to HCHC to maintain proper heterochromatin boundaries.
机译:异铬胺是一种染色质形式的染色质,限制对DNA的访问,并抑制遗传过程,包括转录和重组。在神经孢子酸盐克萨群中,组成型异铬酰胺的特征在于赖氨酸9对组蛋白H3的三甲基化,组蛋白的低乙酰化和DNA甲基化。我们探讨了保守的组蛋白去甲基酶,赖氨酸特异性去甲基酶1(LSD1),调节神经孢子菌中的异铬胺,如果是的话,如何。虽然LSD1涉及异铬素调节,但其功能在不同的系统上不一致;已经显示LSD1的直脑通过除去H3K4ME或H3K9ME来促进或拮抗异铬胺膨胀。我们识别神经孢子菌LSD复合体(LSDC)的三个成员:LSD1,PHF1和BDP-1。缺乏这些蛋白质的菌株表现出异形素蛋白的可变扩散和在整个基因组中建立新的异铬胺瘤。尽管H3K9ME3的建立通常与神经孢子菌中的DNA甲基化无关,但DNA甲基化依赖性H3K9ME3的实例已被发现在规范异质蛋白的外部区域。符合此,ΔLSD1菌株的Hyper-H3K9ME3表型取决于DNA甲基化的存在,以及HCHC介导的组蛋白脱乙酰化,表明扩散取决于一些反馈机制。完全,我们的结果表明LSD1与HCHC相反,以维持适当的异铬胺茂密界限。

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