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Genome-wide function of H2B ubiquitylation in promoter and genic regions.

机译:H2B泛素化在启动子和基因区域的全基因组功能。

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摘要

Nucleosomal organization in and around genes may contribute substantially to transcriptional regulation. The contribution of histone modifications to genome-wide nucleosomal organization has not been systematically evaluated. In the present study, we examine the role of H2BK123 ubiquitylation, a key regulator of several histone modifications, on nucleosomal organization at promoter, genic, and transcription termination regions in Saccharomyces cerevisiae. Using high-resolution MNase chromatin immunoprecipitation and sequencing (ChIP-seq), we map nucleosome positioning and occupancy in mutants of the H2BK123 ubiquitylation pathway. We found that H2B ubiquitylation-mediated nucleosome formation and/or stability inhibits the assembly of the transcription machinery at normally quiescent promoters, whereas ubiquitylation within highly active gene bodies promotes transcription elongation. This regulation does not proceed through ubiquitylation-regulated histone marks at H3K4, K36, and K79. Our findings suggest that mechanistically similar functions of H2B ubiquitylation (nucleosome assembly) elicit different functional outcomes on genes depending on its positional context in promoters (repressive) versus transcribed regions (activating).
机译:基因内部和周围的核糖体组织可能对转录调控起重要作用。组蛋白修饰对全基因组核小体组织的贡献尚未得到系统的评估。在本研究中,我们研究了酿酒酵母中启动子,基因和转录终止区域的核小体组织H2BK123泛素化(几个组蛋白修饰的关键调控因子)的作用。使用高分辨率MNase染色质免疫沉淀和测序(ChIP-seq),我们在H2BK123泛素化途径的突变体中绘制核小体的定位和占有率。我们发现H2B泛素化介导的核小体的形成和/或稳定性抑制了正常静止启动子处转录机制的装配,而高活性基因体内的泛素化促进了转录延伸。该调节不会通过在H3K4,K36和K79处由泛素化调节的组蛋白标记来进行。我们的发现表明,H2B泛素化(核小体装配体)的机制上相似的功能会在基因上引发不同的功能结果,具体取决于其在启动子(阻抑)与转录区(激活)中的位置。

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