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UpSET-ing the balance Modulating open chromatin features in metazoan genomes

机译:平衡平衡调节后生动物基因组中的开放染色质特征

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A ppropriate gene expression relies on the sophisticated interplay between genetic and epigenetic factors. Histone acetylation and an open chromatin configuration are key features of transcribed regions and are mainly present around active promoters. Our recent identification of the SET-domain containing protein UpSET established a new functional link between the modulation of open chromatin features and active recruitment of well-known co-repressors in metazoans. Structurally, the SET domain of UpSET resembles H3K4 and H3K36 methyltransferases; however, it is does not confer histone methyltransferase activity. Rather than methylating histones to regulate gene expression like other SET domain-containing proteins, UpSET fine-tunes transcription by modulating the chromatin structure around active promoters resulting in suppression of expression of off-target genes or nearby repetitive elements. Chromatin modulation by UpSET occurs in part through its interaction with histone deacetylases. Here, we discuss the different scenarios in which UpSET could play key roles in modulating gene expression.
机译:适当的基因表达依赖于遗传因素与表观遗传因素之间的复杂相互作用。组蛋白乙酰化和开放的染色质构型是转录区域的关键特征,主要存在于活性启动子周围。我们最近对包含SET结构域的蛋白UpSET的鉴定在开放染色质特征的调节与后生动物中众所周知的共阻遏物的主动募集之间建立了新的功能联系。在结构上,UpSET的SET结构域类似于H3K4和H3K36甲基转移酶;但是,它不赋予组蛋白甲基转移酶活性。 UpSET不是甲基化组蛋白像其他含SET域的蛋白质那样调节基因表达,而是通过调节活性启动子周围的染色质结构来微调转录,从而抑制脱靶基因或附近重复元件的表达。 UpSET对染色质的调节部分通过其与组蛋白脱乙酰基酶的相互作用而发生。在这里,我们讨论了UpSET在调节基因表达中起关键作用的不同方案。

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