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反平行β-折叠中侧链相互作用和对相关性的分析:主链氢键结合和非氢键结合残基对之间的差异。

An analysis of side chain interactions and pair correlations within antiparallel beta-sheets: the differences between backbone hydrogen-bonded and non-hydrogen-bonded residue pairs.

作者信息

Wouters M A, Curmi P M

机构信息

School of Physics, University of New South Wales, Sydney, Australia.

出版信息

Proteins. 1995 Jun;22(2):119-31. doi: 10.1002/prot.340220205.

Abstract

Cross-strand pair correlations are calculated for residue pairs in anti-parallel beta-sheet for two cases: pairs whose backbone atoms are hydrogen bonded together (H-bonded site) and pairs which are not (non-H-bonded site). The statistics show that this distinction is important. When glycine is located on the edge of a sheet, it shows a 3:1 preference for the H-bonded site. The strongest observed correlations are for pairs of disulfide-bonded cystines, many of which adopt a close-packed conformation with each cystine in a spiral conformation of opposite chirality to its partner. It is likely that these pairs are a signature for the family of small, cystine-rich proteins. Most other strong positive and negative correlations involve charged and polar residues. It appears that electrostatic compatibility is the strongest factor affecting pair correlation. Significant correlations are observed for beta- and gamma-branched residues in the non-H-bonded site. An examination of the structures shows a directionality in side chain packing. There is a correlation between (1) the directionality in the packing interactions of non-H-bonded beta- and gamma-branched residue pairs, (2) the handedness of the observed enantiomers of chiral beta-branched side chains, and (3) the handedness of the twist of beta-sheet. These findings have implications for the formation of beta-sheets during protein folding and the mechanism by which the sheet becomes twisted.

摘要

针对反平行β折叠中的残基对,计算了跨链配对相关性,分两种情况:主链原子通过氢键相连的残基对(氢键结合位点)和不通过氢键相连的残基对(非氢键结合位点)。统计结果表明这种区分很重要。当甘氨酸位于β折叠边缘时,它对氢键结合位点表现出3:1的偏好。观察到的最强相关性存在于二硫键连接的半胱氨酸对中,其中许多半胱氨酸对采取紧密堆积构象,每个半胱氨酸与其配对体呈相反手性的螺旋构象。这些残基对很可能是富含半胱氨酸的小蛋白家族的特征。大多数其他强正相关和负相关涉及带电荷和极性的残基。看来静电兼容性是影响配对相关性的最强因素。在非氢键结合位点观察到β分支和γ分支残基之间存在显著相关性。对结构的研究表明侧链堆积具有方向性。(1)非氢键结合的β分支和γ分支残基对的堆积相互作用的方向性、(2)手性β分支侧链观察到的对映体的手性以及(3)β折叠的扭转手性之间存在相关性。这些发现对蛋白质折叠过程中β折叠的形成以及β折叠发生扭转的机制具有启示意义。

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