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Regulation of transcription factor activity by interconnected post-translational modifications

机译:相互关联的翻译后修饰对转录因子活性的调节

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Transcription factors comprise just over 7% of the human proteome and serve as gatekeepers of cellular function, integrating external signal information into gene expression programs that reconfigure cellular physiology at the most basic levels. Surface-initiated cell signaling pathways converge on transcription factors, decorating these proteins with an array of post-translational modifications (PTMs) that are often interdependent, being linked in time, space, and combinatorial function. These PTMs orchestrate every activity of a transcription factor over its entire lifespan - from subcellular localization to protein-protein interactions, sequence-specific DNA binding, transcriptional regulatory activity, and protein stability - and play key roles in the epigenetic regulation of gene expression. The multitude of PTMs of transcription factors also offers numerous potential points of intervention for development of therapeutic agents to treat a wide spectrum of diseases. We review PTMs most commonly targeting transcription factors, focusing on recent reports of sequential and linked PTMs of individual factors.
机译:转录因子仅占人类蛋白质组的7%以上,并充当细胞功能的守门员,将外部信号信息整合到基因表达程序中,从而在最基本的水平上重新配置细胞生理学。表面启动的细胞信号传导途径在转录因子上汇聚,用一系列翻译后修饰(PTM)修饰这些蛋白质,这些翻译后修饰通常是相互依赖的,在时间,空间和组合功能上相互联系。这些PTM协调转录因子在其整个生命周期中的所有活动-从亚细胞定位到蛋白质-蛋白质相互作用,序列特异性DNA结合,转录调节活性和蛋白质稳定性-并在基因表达的表观遗传调控中发挥关键作用。转录因子的众多PTM还为开发用于治疗多种疾病的治疗剂提供了许多潜在的干预点。我们回顾最常针对转录因子的PTM,重点关注各个因子的顺序和链接PTM的最新报告。

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