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蛋白质结构中金属离子与含硫配体相互作用的几何学

Geometry of interaction of metal ions with sulfur-containing ligands in protein structures.

作者信息

Chakrabarti P

机构信息

Department of Chemistry and Biochemistry, University of California, Los Angeles 90024.

出版信息

Biochemistry. 1989 Jul 11;28(14):6081-5. doi: 10.1021/bi00440a052.

Abstract

An analysis of the geometry of binding of metal ions by cysteine and methionine residues in protein structures has been made by using the Protein Data Bank. Metal ions have a distinct model of binding to each of these residues, and this is independent of the nature of the metal center or the type of protein. Metal ions tend to approach the sulfur of Met roughly 38 degrees from the perpendicular to the plane through atoms C gamma-S delta-C epsilon. For Cys, the approach direction is such that the M...S gamma-C beta-C alpha torsional angle is about +/- 90 or 180 degrees. The side-chain conformation of the cysteine residue is affected by the presence of the metal ion; there is a shift from the g+ conformation toward g- and mainly t conformations. When two Cys residues at positions i-3 and i bind to the same metal center, there appears to be some restriction on the geometry of metal binding by the residue i; for such a residue chi 1 and M...S gamma-C beta-C alpha angles are likely to be around 60 degrees and 270 degrees, respectively. Met and Cys residues coordinating to a metal ion are usually from coil or turn regions of the protein structure.

摘要

利用蛋白质数据库对蛋白质结构中半胱氨酸和蛋氨酸残基与金属离子的结合几何结构进行了分析。金属离子与这些残基中的每一个都有独特的结合模式,且这与金属中心的性质或蛋白质的类型无关。金属离子倾向于从垂直于通过原子Cγ-Sδ-Cε的平面大约38度的方向接近甲硫氨酸的硫原子。对于半胱氨酸,接近方向使得M...Sγ-Cβ-Cα扭转角约为+/-90度或180度。金属离子的存在会影响半胱氨酸残基的侧链构象;存在从g+构象向g-和主要是t构象的转变。当i-3和i位的两个半胱氨酸残基与同一个金属中心结合时,i位残基对金属结合的几何结构似乎存在一些限制;对于这样的残基,χ1和M...Sγ-Cβ-Cα角可能分别约为60度和270度。与金属离子配位的甲硫氨酸和半胱氨酸残基通常来自蛋白质结构的卷曲或转角区域。

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