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插入水中的α-螺旋片段表明反向转角是折叠中间体。

Water-inserted alpha-helical segments implicate reverse turns as folding intermediates.

作者信息

Sundaralingam M, Sekharudu Y C

机构信息

Department of Biochemistry, University of Wisconsin-Madison 53706.

出版信息

Science. 1989 Jun 16;244(4910):1333-7. doi: 10.1126/science.2734612.

Abstract

Information relevant to the folding and unfolding of alpha helices has been extracted from an analysis of protein structures. The alpha helices in protein crystal structures have been found to be hydrated, either externally by a water molecule hydrogen bonding to the backbone carbonyl oxygen atom, or internally by inserting into the helix hydrogen bond and forming a hydrogen-bonded bridge between the backbone carbonyl oxygen and the amide nitrogen atoms. The water-inserted alpha-helical segments display a variety of reverse-turn conformations, such as type III, type II, type I, and opened out, that can be considered as folding intermediates that are trapped in the folding-unfolding process of alpha helices. Since the alpha helix, most turns, and the extended beta strand occupy contiguous regions in the conformational space of phi, psi dihedral angles, a plausible pathway can be proposed for the folding-unfolding process of alpha helices in aqueous solution.

摘要

通过对蛋白质结构的分析,已提取出与α螺旋折叠和展开相关的信息。人们发现,蛋白质晶体结构中的α螺旋是水合的,要么通过与主链羰基氧原子形成氢键的水分子在外部水合,要么通过插入螺旋氢键并在主链羰基氧和酰胺氮原子之间形成氢键桥在内部水合。水插入的α螺旋片段呈现出多种反向转角构象,如III型、II型、I型和展开型,这些构象可被视为在α螺旋折叠-展开过程中被困住的折叠中间体。由于α螺旋、大多数转角和延伸的β链占据了φ、ψ二面角构象空间中的相邻区域,因此可以为水溶液中α螺旋的折叠-展开过程提出一条合理的途径。

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