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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Genome-wide, as opposed to local, antisilencing is mediated redundantly by the euchromatic factors Set1 and H2A.Z
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Genome-wide, as opposed to local, antisilencing is mediated redundantly by the euchromatic factors Set1 and H2A.Z

机译:与全基因组抗沉默相比,全基因组抗沉默由常染色体因子Set1和H2A.Z冗余介导。

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摘要

In Saccharomyces cerevisiae, several nonessential mechanisms including histone variant H2A.Z deposition and transcription-associated histone H3 methylation antagonize the local spread of Sir-dependent silent chromatin into adjacent euchromatic regions. However, it is unclear how and where these factors cooperate. To probe this question, we performed systematic genetic array screens for gene deletions that cause a synthetic growth defect in an htz1Δ mutant but not in an htz1Δ sir3Δ double mutant. Of the four genes identified, three, SET1, SWD1, and SWD3, encode components of the Set1 complex, which catalyzes the methylation of histone H3 on lysine 4 (H3-K4), a highly conserved modification that occurs in the coding sequences of transcribed genes. Using microarray-based transcriptional profiling, we find that H2A.Z and Set1 cooperate to prevent Sir-dependent repression of a large number of genes located across the genome, rather than the local effects reported previously for the individual mechanisms. This global, redundant function appears to be direct: using a DamID chromatin profiling method, we demonstrate ectopic association of Sir3 and Sir4 in htz1Δ set1Δ mutants at loci distant from silent chromatin domains. Antisilencing mechanisms may therefore cooperate to play a considerably broader role in regulating genome-wide transcription than previously thought.
机译:在酿酒酵母中,包括组蛋白变体H2A.Z沉积和转录相关的组蛋白H3甲基化在内的几种非必需机制可拮抗Sir依赖性沉默染色质向邻近的常色区的局部扩散。但是,尚不清楚这些因素如何以及在何处合作。为了探究这个问题,我们进行了系统的遗传阵列筛选,以寻找导致htz1Δ突变体而非htz1Δsir3Δ双突变体中合成生长缺陷的基因缺失。在鉴定出的四个基因中,三个SET1,SWD1和SWD3编码Set1复合物的成分,该复合物催化赖氨酸4(H3-K4)上组蛋白H3的甲基化,这是在转录的编码序列中高度保守的修饰。基因。使用基于微阵列的转录谱,我们发现H2A.Z和Set1协同合作,以防止Sir依赖性阻遏位于整个基因组中的大量基因,而不是先前针对单个机制报道的局部效应。这种全局的,冗余的功能似乎是直接的:使用DamID染色质谱分析方法,我们证明了htz1Δset1Δ突变体中Sir3和Sir4的异位缔合在远离沉默染色质域的基因座上。因此,抗沉默机制可能在调节全基因组转录方面起着比以前认为的广泛得多的作用。

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