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Forced folding of a disordered protein accesses an alternative folding landscape

机译:强迫折叠无序蛋白质会获得另一种折叠方式

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摘要

Intrinsically disordered proteins (IDPs) are involved in diverse cellular functions. Many IDPs can interact with multiple binding partners, resulting in their folding into alternative ligand-specific functional structures. For such multi-structural IDPs, a key question is whether these multiple structures are fully encoded in the protein sequence, as is the case in many globular proteins. To answer this question, here we employed a combination of single-molecule and ensemble techniques to compare ligand-induced and osmolyte-forced folding of α-synuclein. Our results reveal context-dependent modulation of the protein’s folding landscape, suggesting that the codes for the protein’s native folds are partially encoded in its primary sequence, and are completed only upon interaction with binding partners. Our findings suggest a critical role for cellular interactions in expanding the repertoire of folds and functions available to disordered proteins.
机译:本质上无序的蛋白质(IDP)参与多种细胞功能。许多IDP可以与多个结合配偶体相互作用,导致它们折叠成其他配体特异性功能结构。对于这样的多结构IDP,关键问题是这些多重结构是否在蛋白质序列中完全编码,就像许多球状蛋白质一样。为了回答这个问题,在这里我们结合了单分子和集成技术,比较了配体诱导的和渗透压强迫的α-突触核蛋白折叠。我们的结果揭示了蛋白质折叠态的上下文相关调节,表明该蛋白质天然折叠的代码部分编码在其主要序列中,只有在与结合伴侣相互作用时才能完成。我们的发现表明细胞相互作用在扩大无序蛋白质的折叠和功能库中起着至关重要的作用。

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