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Direct interrogation of the role of H3K9 in metazoan heterochromatin function

机译:H3K9在后生异染色质功能中的作用的直接询问

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摘要

A defining feature of heterochromatin is methylation of Lys9 of histone H3 (H3K9me), a binding site for heterochromatin protein 1 (HP1). Although H3K9 methyltransferases and HP1 are necessary for proper heterochromatin structure, the specific contribution of H3K9R to heterochromatin function and animal development is unknown. Using our recently developed platform to engineer histone genes in Drosophila, we generated H3K9R mutant flies, separating the functions of H3K9 and nonhistone substrates of H3K9 methyltransferases. Nucleosome occupancy and HP1a binding at pericentromeric heterochromatin are markedly decreased in H3K9R mutants. Despite these changes in chromosome architecture, a small percentage of H3K9R mutants complete development. Consistent with this result, expression of most protein-coding genes, including those within heterochromatin, is similar between H3K9R and controls. In contrast, H3K9R mutants exhibit increased open chromatin and transcription from piRNA clusters and transposons, resulting in transposon mobilization. Hence, transposon silencing is a major developmental function of H3K9.
机译:异染色质的定义特征是组蛋白H3(H3K9me)的Lys9甲基化,这是异染色质蛋白1(HP1)的结合位点。尽管H3K9甲基转移酶和HP1是适当的异染色质结构所必需的,但H3K9R对异染色质功能和动物发育的具体贡献尚不清楚。使用我们最近开发的平台对果蝇中的组蛋白基因进行工程改造,我们生成了H3K9R突变体果蝇,将H3K9和H3K9甲基转移酶的非组蛋白底物分开。在H3K9R突变体中,核小体的占有率和着丝粒异质染色质上的HP1a结合显着降低。尽管染色体结构发生了这些变化,但仍有少量的H3K9R突变体完成了发育。与此结果一致,大多数蛋白编码基因(包括异染色质内的那些蛋白)的表达在H3K9R和对照之间相似。相反,H3K9R突变体表现出增加的开放染色质和从piRNA簇和转座子转录,导致转座子动员。因此,转座子沉默是H3K9的主要发育功能。

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