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尿素变性的大肠杆菌外膜蛋白X(OmpX)中的非随机结构。

Nonrandom structure in the urea-unfolded Escherichia coli outer membrane protein X (OmpX).

作者信息

Tafer Hakim, Hiller Sebastian, Hilty Christian, Fernández César, Wüthrich Kurt

机构信息

Institut für Molekularbiologie und Biophysik, Eidgenössische Technische Hochschule Zürich, CH-8093 Zürich, Switzerland.

出版信息

Biochemistry. 2004 Feb 3;43(4):860-9. doi: 10.1021/bi0356606.

DOI:10.1021/bi0356606
PMID:14744128
Abstract

On the basis of sequence-specific resonance assignments for the complete polypeptide backbone and most of the amino acid side chains by heteronuclear nuclear magnetic resonance (NMR) spectroscopy, the urea-unfolded form of the outer membrane protein X (OmpX) from Escherichia coli has been structurally characterized. (1)H-(1)H nuclear Overhauser effects (NOEs), dispersion of the chemical shifts, amide proton chemical shift temperature coefficients, amide proton exchange rates, and (15)N[(1)H]-NOEs show that OmpX in 8 M urea at pH 6.5 is globally unfolded, but adopts local nonrandom conformations in the polypeptide segments of residues 73-82 and 137-145. For these two regions, numerous medium-range and longer-range NOEs were observed, which were used as the input for structure calculations of these polypeptide segments with the program DYANA. The segment 73-82 forms a quite regular helical structure, with only loosely constrained amino acid side chains. In the segment 137-145, the tryptophan residue 140 forms the core of a small hydrophobic cluster. Both nonrandom structures are present with an abundance of about 25% of the protein molecules. The sequence-specific NMR assignment and the physicochemical characterization of urea-denatured OmpX presented in this paper are currently used as a platform for investigations of the folding mechanism of this integral membrane protein.

摘要

基于通过异核核磁共振(NMR)光谱对完整多肽主链和大多数氨基酸侧链进行的序列特异性共振归属,对来自大肠杆菌的外膜蛋白X(OmpX)的尿素展开形式进行了结构表征。氢-氢核Overhauser效应(NOE)、化学位移的分散、酰胺质子化学位移温度系数、酰胺质子交换率以及氮-氢NOE表明,在pH 6.5的8 M尿素中,OmpX整体展开,但在残基73 - 82和137 - 145的多肽片段中呈现局部非随机构象。对于这两个区域,观察到了大量的中程和长程NOE,这些被用作使用DYANA程序对这些多肽片段进行结构计算的输入。73 - 82片段形成了相当规则的螺旋结构,只有松散受限的氨基酸侧链。在137 - 145片段中,色氨酸残基140形成了一个小疏水簇的核心。这两种非随机结构在约25%的蛋白质分子中存在。本文中呈现的尿素变性OmpX的序列特异性NMR归属和物理化学表征目前被用作研究这种整合膜蛋白折叠机制的平台。

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