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与蛋白质相关的金属-配体相互作用的几何学

The geometry of metal-ligand interactions relevant to proteins.

作者信息

Harding M M

机构信息

Structural Biochemistry Group, Institute of Cell and Molecular Biology, University of Edinburgh, Michael Swann Building, Edinburgh EH9 3JR, Scotland.

出版信息

Acta Crystallogr D Biol Crystallogr. 1999 Aug;55(Pt 8):1432-43. doi: 10.1107/s0907444999007374.

Abstract

Geometrical data which could be of relevance in the structure determination, structure refinement, assessment or understanding of metalloproteins have been extracted from the Cambridge Structural Database (CSD). The CSD contains crystallographic data from 'small-molecule' structures determined by X-ray or neutron diffraction to an accuracy much better than that of most current protein structure determinations. The structures selected have a crystallographic R factor </= 0.065 and contain Ca, Mg, Mn, Fe, Cu or Zn interacting with ligands which are analogues of the amino-acid side chains commonly found in proteins; they include carboxylate groups, alcohols, phenolates, thiolates, imidazole groups and also water molecules. For each pair, the mean metal-donor-atom distance, the sample standard deviation and the range of observed values are tabulated, using approximately 4500 observations in all. Where practicable, subsets with different coordination numbers and/or oxidation states are given. Also included are inter-bond angles at the ligand donor atom, the orientation of carboxylate and imidazole groups with respect to the metal-donor-atom bond and some other aspects of ligand geometry. Thus, for example, target distances and their standard deviations could be easily looked up for the validation of a metalloprotein structure or for use in restrained refinement with low-resolution data.

摘要

从剑桥结构数据库(CSD)中提取了可能与金属蛋白的结构测定、结构精修、评估或理解相关的几何数据。CSD包含通过X射线或中子衍射测定的“小分子”结构的晶体学数据,其精度比目前大多数蛋白质结构测定的精度高得多。所选结构的晶体学R因子≤0.065,且包含与蛋白质中常见氨基酸侧链类似的配体相互作用的钙、镁、锰、铁、铜或锌;它们包括羧基、醇类、酚盐、硫醇盐、咪唑基以及水分子。对于每一对,列出了平均金属 - 供体原子距离、样本标准偏差和观测值范围,总共使用了约4500个观测值。在可行的情况下,给出了具有不同配位数和/或氧化态的子集。还包括配体供体原子处的键间角度、羧基和咪唑基相对于金属 - 供体原子键的取向以及配体几何结构的其他一些方面。因此,例如,可以很容易地查找目标距离及其标准偏差,以验证金属蛋白结构或用于低分辨率数据的约束精修。

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