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活细胞中无序蛋白质的序列-集合-功能关系

Sequence-ensemble-function relationships for disordered proteins in live cells.

作者信息

Emenecker Ryan J, Guadalupe Karina, Shamoon Nora M, Sukenik Shahar, Holehouse Alex S

机构信息

Department of Biochemistry and Molecular Biophysics, Washington University School of Medicine, St. Louis, MO.

Center for Biomolecular Condensates (CBC), Washington University in St. Louis, St. Louis, MO.

出版信息

bioRxiv. 2023 Nov 13:2023.10.29.564547. doi: 10.1101/2023.10.29.564547.

Abstract

Intrinsically disordered protein regions (IDRs) are ubiquitous across all kingdoms of life and play a variety of essential cellular roles. IDRs exist in a collection of structurally distinct conformers known as an ensemble. An IDR's amino acid sequence determines its ensemble, which in turn can play an important role in dictating molecular function. Yet a clear link connecting IDR sequence, its ensemble properties, and its molecular function in living cells has not been directly established. Here, we set out to test this sequence-ensemble-function paradigm using a novel computational method (GOOSE) that enables the rational design of libraries of IDRs by systematically varying specific sequence properties. Using ensemble FRET, we measured the ensemble dimensions of a library of rationally designed IDRs in human-derived cell lines, revealing how IDR sequence influences ensemble dimensions Furthermore, we show that the interplay between sequence and ensemble can tune an IDR's ability to sense changes in cell volume - a molecular function for these synthetic sequences. Our results establish biophysical rules for intracellular sequence-ensemble relationships, enable a new route for understanding how IDR sequences map to function in live cells, and set the ground for the design of synthetic IDRs with function.

摘要

内在无序蛋白区域(IDRs)在所有生命王国中普遍存在,并发挥着多种重要的细胞作用。IDRs以一种称为集合体的结构不同的构象体集合形式存在。IDR的氨基酸序列决定其集合体,而集合体又可在决定分子功能方面发挥重要作用。然而,尚未直接建立起连接IDR序列、其集合体特性及其在活细胞中的分子功能的明确联系。在此,我们着手使用一种新颖的计算方法(GOOSE)来测试这种序列-集合体-功能范式,该方法通过系统地改变特定序列特性,能够合理设计IDR文库。利用集合体荧光共振能量转移(ensemble FRET),我们测量了人源细胞系中合理设计的IDR文库的集合体尺寸,揭示了IDR序列如何影响集合体尺寸。此外,我们表明序列与集合体之间的相互作用可以调节IDR感知细胞体积变化的能力——这些合成序列的一种分子功能。我们的结果建立了细胞内序列-集合体关系的生物物理规则,为理解IDR序列如何在活细胞中映射到功能开辟了一条新途径,并为设计具有功能的合成IDR奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6964/10659870/21fb99ed42b5/nihpp-2023.10.29.564547v2-f0001.jpg

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