概述转录因子在基因调控中的构象灵活性的重要性。

Shagufta H Khan, Raj Kumar
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引用次数: 10

摘要

据报道,许多具有内在无序(ID)区域/结构域的蛋白质在转录因子中比例更高。现有证据表明,转录因子中存在的ID区域/结构域在其生物学功能中起着重要作用。这些ID序列提供了大的柔性表面,可以使它们与目标伙伴进行更有效的物理和功能交互。由于转录因子通过与特定的协调节蛋白相互作用来调节靶基因的表达,这些ID区域/结构域可以作为这种大分子相互作用的平台,并可能代表一种调节细胞过程的机制。转录因子的这些ID区域/结构域功能的精确结构基础仍有待确定。近年来,越来越多的证据表明,诱导的拟合过程导致在这些构建大型多蛋白复合物的ID结构域上施加折叠功能结构。这些多蛋白复合物可能最终决定了转录因子对基因调控的最终结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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An overview of the importance of conformational flexibility in gene regulation by the transcription factors.

A number of proteins with intrinsically disordered (ID) regions/domains are reported to be found disproportionately higher in transcription factors. Available evidences suggest that presence of ID region/domain within a transcription factor plays an important role in its biological functions. These ID sequences provide large flexible surfaces that can allow them to make more efficient physical and functional interactions with their target partners. Since transcription factors regulate expression of target genes by interacting with specific coregulatory proteins, these ID regions/domains can be used as a platform for such large macromolecular interactions, and may represent a mechanism for regulation of cellular processes. The precise structural basis for the function of these ID regions/domains of the transcription factors remains to be determined. In the recent years there has been growing evidence suggesting that an induced fit-like process leads to imposition of folded functional structure in these ID domains on which large multiprotein complexes are built. These multiprotein complexes may eventually dictate the final outcome of the gene regulation by the transcription factors.

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