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基于核磁共振的溶剂交换实验,以FG核孔蛋白肽为模型来理解内在无序蛋白质的构象偏好。

NMR based solvent exchange experiments to understand the conformational preference of intrinsically disordered proteins using FG-nucleoporin peptide as a model.

作者信息

Heisel Kurt A, Krishnan V V

机构信息

Department of Chemistry, California State University, Fresno, CA, 93740.

出版信息

Biopolymers. 2014 Jan;102(1):69-77. doi: 10.1002/bip.22402.

Abstract

The conformational preference of a peptide with three phenylalanine-glycine (FG) repeats from the intrinsically disordered domain of nucleoporin 159 (nup159) from the yeast nucleopore complex is studied. Conformational states of this FG-peptide in dimethyl sulfoxide (DMSO), a non-native solvent, are first studied. A solvent exchange scheme is designed and performed to understand how the conformational preferences of the peptide are altered as the solvent shifts from DMSO to water. An ensemble of structures of a 19-residue peptide is determined based on (13)Cα, (1)Hα, and (1)HN chemical shifts and with inter-proton distances. An experimental model is then presented where chemical shifts and amide-proton temperature dependence is probed at changing DMSO to water ratios. These co-solvent experiments provide evidence of a conformational change as the fraction of water increases by the stark change in the behavior of amide protons under varied temperature. This investigation provides a NMR based experimental method in the field of intrinsically disordered proteins to realize conformational transitions from a non-native set of structures (in DMSO) to a native set of disordered conformers (in water).

摘要

研究了来自酵母核孔复合体的核孔蛋白159(nup159)内在无序结构域中具有三个苯丙氨酸 - 甘氨酸(FG)重复序列的肽的构象偏好。首先研究了该FG肽在非天然溶剂二甲基亚砜(DMSO)中的构象状态。设计并执行了一种溶剂交换方案,以了解随着溶剂从DMSO转变为水,肽的构象偏好如何改变。基于(13)Cα、(1)Hα和(1)HN化学位移以及质子间距离,确定了一个19个残基肽的结构集合。然后提出了一个实验模型,其中在改变DMSO与水的比例时探测化学位移和酰胺质子温度依赖性。这些共溶剂实验通过不同温度下酰胺质子行为的明显变化,提供了随着水的比例增加而发生构象变化的证据。这项研究在内在无序蛋白质领域提供了一种基于核磁共振的实验方法,以实现从非天然结构集(在DMSO中)到天然无序构象集(在水中)的构象转变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bef/4020917/fe9e1ba8149e/nihms573554f1.jpg

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