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理想化α/β桶的设计:β折叠闭合要求分析

The design of idealized alpha/beta-barrels: analysis of beta-sheet closure requirements.

作者信息

Lasters I, Wodak S J, Pio F

机构信息

Plant Genetic Systems, CP160 P2 Université Libre de Bruxelles, Belgium.

出版信息

Proteins. 1990;7(3):249-56. doi: 10.1002/prot.340070306.

Abstract

The 8-fold parallel alpha/beta-barrel topology is encountered in proteins that display an impressive variety of functions, suggesting that this topology may be a rather nonspecific and stable folding motif. Consequently, this motif can be considered as an interesting framework to design novel proteins. It has been shown that the shape of the beta-sheet portion of the barrel can be approximated by a hyperboloid. This geometric object may therefore be used as a scaffold to construct an idealized eight-stranded beta-barrel. To facilitate the de novo design of such structures, a collection of modeling tools has been developed allowing secondary structure elements to be mapped onto the scaffold surface and rotation and translation operations to be performed about user defined axes while evaluating their contribution to the conformational energy of the system. These tools have been applied in a systematic study assessing the phi, psi requirements to design symmetric eight stranded beta barrels with optimal hydrogen bonding between adjacent beta-strands. It is observed that: (a) the beta-sheet structure can be closed without introducing irregular stagger between beta-strands and (b) the region of phi, psi dihedral angle space compatible with the formation of regular symmetric eight stranded beta-barrels coincides with the phi, psi region corresponding to average beta-strands in known protein structures, suggesting that barrel closure does not impose gross constraints on beta-strand geometry.

摘要

在具有多种令人印象深刻功能的蛋白质中会遇到8重平行α/β桶状拓扑结构,这表明这种拓扑结构可能是一种相当非特异性且稳定的折叠基序。因此,这个基序可被视为设计新型蛋白质的一个有趣框架。已经表明,桶状结构的β折叠部分的形状可以用一个双叶旋转双曲面来近似。因此,这个几何对象可以用作构建理想化八链β桶的支架。为了便于从头设计这样的结构,已经开发了一系列建模工具,这些工具允许将二级结构元件映射到支架表面,并围绕用户定义的轴执行旋转和平移操作,同时评估它们对系统构象能量的贡献。这些工具已应用于一项系统研究中,该研究评估了设计具有相邻β链之间最佳氢键的对称八链β桶所需的φ、ψ角条件。观察到:(a)β折叠结构可以闭合而不会在β链之间引入不规则的交错;(b)与规则对称八链β桶形成相容的φ、ψ二面角空间区域与已知蛋白质结构中对应于平均β链的φ、ψ区域重合,这表明桶状闭合对β链几何结构没有严重限制。

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