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与十二烷基磷酸胆碱胶束结合的鼠源 18.5kDa 髓鞘碱性蛋白片段(S72-S107)的溶液核磁共振结构和分子动力学模拟。

Solution nuclear magnetic resonance structure and molecular dynamics simulations of a murine 18.5 kDa myelin basic protein segment (S72-S107) in association with dodecylphosphocholine micelles.

机构信息

Department of Molecular and Cellular Biology, University of Guelph, 50 Stone Road East, Guelph, Ontario N1G 2W1, Canada.

出版信息

Biochemistry. 2012 Sep 25;51(38):7475-87. doi: 10.1021/bi300998x. Epub 2012 Sep 14.

DOI:10.1021/bi300998x
PMID:22947219
Abstract

The 18.5 kDa myelin basic protein (MBP), the most abundant splice isoform in adult mammalian myelin, is a multifunctional, intrinsically disordered protein involved in the development and compaction of the myelin sheath in the central nervous system. A highly conserved central segment comprises a membrane-anchoring amphipathic α-helix followed by a proline-rich segment that represents a ligand for SH3 domain-containing proteins. Here, we have determined using solution nuclear magnetic resonance spectroscopy the structure of a 36-residue peptide fragment of MBP (murine 18.5 kDa residues S72-S107, denoted the α2-peptide) comprising these two structural motifs, in association with dodecylphosphocholine (DPC) micelles. The structure was calculated using CS-ROSETTA (version 1.01) because the nuclear Overhauser effect restraints were insufficient for this protein. The experimental studies were complemented by molecular dynamics simulations of a corresponding 24-residue peptide fragment (murine 18.5 kDa residues E80-G103, denoted the MD-peptide), also in association with a DPC micelle in silico. The experimental and theoretical results agreed well with one another, despite the independence of the starting structures and analyses, both showing membrane association via the amphipathic α-helix, and a sharp bend in the vicinity of the Pro93 residue (murine 18.5 kDa sequence numbering). Overall, the conformations elucidated here show how the SH3 ligand is presented to the cytoplasm for interaction with SH3 domain-containing proteins such as Fyn and contribute to our understanding of myelin architecture at the molecular level.

摘要

18.5kDa 髓鞘碱性蛋白(MBP)是成熟哺乳动物髓鞘中含量最丰富的剪接异构体,是一种多功能的、固有无序的蛋白质,参与中枢神经系统髓鞘的发育和压缩。一个高度保守的中央片段由一个膜锚定的两亲性α-螺旋组成,其后是一个富含脯氨酸的片段,该片段代表 SH3 结构域含有蛋白质的配体。在这里,我们使用溶液核磁共振波谱法确定了 MBP(鼠 18.5kDa 残基 S72-S107,称为α2-肽)的 36 个残基肽片段的结构,该片段包含这两个结构基序,与十二烷基磷酸胆碱(DPC)胶束结合。由于该蛋白质的核 Overhauser 效应约束不足,因此使用 CS-ROSETTA(版本 1.01)计算结构。实验研究通过与 DPC 胶束在计算机中的相应 24 个残基肽片段(鼠 18.5kDa 残基 E80-G103,称为 MD-肽)的分子动力学模拟得到补充。尽管起始结构和分析是独立的,但实验和理论结果彼此非常吻合,两者都显示通过两亲性α-螺旋进行膜结合,并在靠近 Pro93 残基(鼠 18.5kDa 序列编号)的附近出现明显弯曲。总体而言,这里阐明的构象表明 SH3 配体如何呈现给细胞质以与 SH3 结构域含有蛋白质(如 Fyn)相互作用,并有助于我们在分子水平上理解髓鞘结构。

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