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结构偏好塑造无序蛋白质集合的熵力。

Structural Preferences Shape the Entropic Force of Disordered Protein Ensembles.

机构信息

Quantitative Systems Biology Program, University of California, Merced, California 95343, United States.

Department of Chemistry and Biochemistry, University of California, Merced, California 95343, United States.

出版信息

J Phys Chem B. 2023 May 18;127(19):4235-4244. doi: 10.1021/acs.jpcb.3c00698. Epub 2023 May 8.

Abstract

Intrinsically disordered protein regions (IDRs) make up over 30% of the human proteome and exist in a dynamic conformational ensemble instead of a native, well-folded structure. Tethering IDRs to a surface (for example, the surface of a well-folded region of the same protein) can reduce the number of accessible conformations in these ensembles. This reduces the ensemble's conformational entropy, generating an effective entropic force that pulls away from the point of tethering. Recent experimental work has shown that this entropic force causes measurable, physiologically relevant changes to protein function. But how the magnitude of this force depends on IDR sequence remains unexplored. Here, we use all-atom simulations to analyze how structural preferences in IDR ensembles contribute to the entropic force they exert upon tethering. We show that sequence-encoded structural preferences play an important role in determining the magnitude of this force: compact, spherical ensembles generate an entropic force that can be several times higher than more extended ensembles. We further show that changes in the surrounding solution's chemistry can modulate the IDR entropic force strength. We propose that the entropic force is a sequence-dependent, environmentally tunable property of terminal IDR sequences.

摘要

无规蛋白区域(IDR)占人类蛋白质组的 30%以上,它们以动态构象集合的形式存在,而不是天然的、折叠良好的结构。将 IDR 束缚在表面上(例如,与同一蛋白质的折叠良好区域的表面)可以减少这些集合中可及构象的数量。这会降低集合的构象熵,产生一种有效的熵力,使其远离束缚点。最近的实验工作表明,这种熵力会导致对蛋白质功能的可测量的、生理相关的变化。但是,这种力的大小如何取决于 IDR 序列仍未被探索。在这里,我们使用全原子模拟来分析 IDR 集合中的结构偏好如何对它们在束缚时施加的熵力产生影响。我们表明,序列编码的结构偏好在确定该力的大小方面起着重要作用:紧凑的、球形的集合产生的熵力可以比更扩展的集合高几倍。我们进一步表明,周围溶液化学性质的变化可以调节 IDR 的熵力强度。我们提出,熵力是末端 IDR 序列的序列依赖性、环境可调的特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c8f6/10201532/6a418ccf8d19/jp3c00698_0002.jpg

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