无序转录因子效应域在转录调控中的多种作用。

Rhea R Datta, Dilan Akdogan, Elif B Tezcan, Pinar Onal
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引用次数: 0

摘要

转录是调控基因表达的关键步骤,受到严格控制,涉及几个基本过程,如染色质组织、特定基因组序列的识别、DNA结合,并最终招募转录机制以促进转录物合成。在这个调控的中心是转录因子(tf),它包括至少一个dna结合域(DBD)和一个效应域(ED)。虽然dbd的结构和功能已经得到了很好的研究,但我们对效应域的结构和功能的了解是有限的。在具有相似dbd和特异性的同一TF家族蛋白成员之间产生不同的转录反应时,ed尤为重要。传统上,对效应域赋予的转录活性的研究是通过检查蛋白质-蛋白质相互作用来进行的。然而,最近的研究揭示了EDs调节基因表达的其他机制,如凝聚物的形成增加了转录因子、辅助因子和共调节基因的局部浓度,以及DNA结合。在这里,我们提供了转录因子EDs的已知作用的全面概述,特别关注紊乱区域。此外,我们强调内在无序区(IDRs)在转录调控中的重要性。我们通过主要紊乱的EDs的结构特性来研究建立和维持转录特异性的机制。然后,我们全面概述了目前对这些结构域的理解,包括它们的物理和化学特征,以及它们的功能角色。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Versatile roles of disordered transcription factor effector domains in transcriptional regulation.

Transcription, a crucial step in the regulation of gene expression, is tightly controlled and involves several essential processes, such as chromatin organization, recognition of the specific genomic sequences, DNA binding, and ultimately recruiting the transcriptional machinery to facilitate transcript synthesis. At the center of this regulation are transcription factors (TFs), which comprise at least one DNA-binding domain (DBD) and an effector domain (ED). Although the structure and function of DBDs have been well studied, our knowledge of the structure and function of effector domains is limited. EDs are of particular importance in generating distinct transcriptional responses between protein members of the same TF family that have similar DBDs and specificities. The study of transcriptional activity conferred by effector domains has traditionally been conducted through examining protein-protein interactions. However, recent research has uncovered alternative mechanisms by which EDs regulate gene expression, such as the formation of condensates that increase the local concentration of transcription factors, cofactors, and coregulated genes, as well as DNA binding. Here, we provide a comprehensive overview of the known roles of transcription factor EDs, with a specific focus on disordered regions. Additionally, we emphasize the significance of intrinsically disordered regions (IDRs) during transcriptional regulation. We examine the mechanisms underlying the establishment and maintenance of transcriptional specificity through the structural properties of predominantly disordered EDs. We then provide a comprehensive overview of the current understanding of these domains, including their physical and chemical characteristics, as well as their functional roles.

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