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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >PR-set7 and H4K20me1: At the crossroads of genome integrity, cell cycle, chromosome condensation, and transcription
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PR-set7 and H4K20me1: At the crossroads of genome integrity, cell cycle, chromosome condensation, and transcription

机译:PR-set7和H4K20me1:处于基因组完整性,细胞周期,染色体浓缩和转录的十字路口

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摘要

Histone post-translational modifications impact many aspects of chromatin and nuclear function. Histone H4 Lys 20 methylation (H4K20me) has been implicated in regulating diverse processes ranging from the DNA damage response, mitotic condensation, and DNA replication to gene regulation. PR-Set7/Set8/KMT5a is the sole enzyme that catalyzes monomethylation of H4K20 (H4K20me1). It is required for maintenance of all levels of H4K20me, and, importantly, loss of PR-Set7 is catastrophic for the earliest stages of mouse embryonic development. These findings have placed PR-Set7, H4K20me, and proteins that recognize this modification as central nodes of many important pathways. In this review, we discuss the mechanisms required for regulation of PR-Set7 and H4K20me1 levels and attempt to unravel the many functions attributed to these proteins.
机译:组蛋白翻译后修饰影响染色质和核功能的许多方面。组蛋白H4 Lys 20甲基化(H4K20me)参与了从DNA损伤反应,有丝分裂凝结,DNA复制到基因调控等多种过程的调控。 PR-Set7 / Set8 / KMT5a是催化H4K20(H4K20me1)单甲基化的唯一酶。它是维持所有水平的H4K20me所必需的,重要的是,PR-Set7的丧失在小鼠胚胎发育的最早阶段是灾难性的。这些发现将PR-Set7,H4K20me和识别这种修饰的蛋白质作为许多重要途径的中心节点。在这篇综述中,我们讨论了调节PR-Set7和H4K20me1水平所需的机制,并试图揭示归因于这些蛋白质的许多功能。

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