Shahar, Sukenik, Carlos, Castaneda, Eduardo , Flores, Nirbhik, Acharya
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摘要

基因组 DNA 的突变往往会导致蛋白质发生单点错义突变。对于大多数折叠蛋白来说,这些错义突变对结构的影响可以理解其功能效应。然而,人们对内在无序蛋白质区域(IDRs)中的错义突变仍然知之甚少。在IDRs中,功能可能取决于结构组合--即氨基酸序列中编码的可访问、可互换构象的集合。我们认为,与折叠蛋白质类似,IDRs 中的单点突变可以改变其结构组合,从而改变其生物功能。为了提出这一论点,我们首先提供了文献中的实验证据,展示了 IDR 中的单点错义突变是如何影响其组合维度的。然后,我们利用患者的基因组数据来说明,在许多情况下,发生在 IDR 中的与疾病相关的错义突变会影响 IDR 组合。我们希望这一分析能促使我们进一步研究 IDR 中与疾病相关的单点突变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single point mutations in disordered proteins: linking sequence, ensemble, and function
Mutations in genomic DNA often result in single-point missense mutations in proteins. For most folded proteins, the functional effect of these missense mutations can be understood by their impact on structure. However, missense mutations in intrinsically disordered protein regions (IDRs) remain poorly understood. In IDRs, function can depend on the structural ensemble - the collection of accessible, interchanging conformations that is encoded in their amino acid sequence. We argue that, analogously to folded proteins, single point mutations in IDRs can alter their structural ensemble, and consequently alter their biological function. To make this argument, we first provide experimental evidence from the literature showcasing how single point missense mutations in IDRs affect their ensemble dimensions. Then, we use genomic data from patients to show that disease-linked missense mutations occurring in IDRs can, in many cases, affect the IDR ensembles. We hope this analysis prompts further study of disease-linked, single-point mutations in IDRs.
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