Analysis of zinc binding sites in protein crystal structures

被引:375
作者
Alberts, IL
Nadassy, K
Wodak, SJ
机构
[1] European Bioinformat Inst, EMBL Outstn, Cambridge CB10 1SD, England
[2] Univ Stirling, Dept Biol & Mol Sci, Stirling FK9 4LA, Scotland
[3] Free Univ Brussels, Unite Conformat Macromol Biol, B-1050 Brussels, Belgium
关键词
bidentate; catalytic; coordination; ligand; sequence pattern; structural; template; zinc;
D O I
10.1002/pro.5560070805
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The geometrical properties of zinc binding sites in a dataset of high quality protein crystal structures deposited in the Protein Data Bank have been examined to identify important differences between zinc sites that are directly involved in catalysis and those that play a structural role. Coordination angles in the zinc primary coordination sphere are compared with ideal values for each coordination geometry, and zinc coordination distances are compared with those in small zinc complexes from the Cambridge Structural Database as a guide of expected trends. We find that distances and angles in the primary coordination sphere are in general close to the expected (or ideal) values. Deviations occur primarily for oxygen coordinating atoms and are found to be mainly due to H-bonding of the oxygen coordinating ligand to protein residues, bidentate binding arrangements, and multi-zinc sites. Ne find that H-bonding of oxygen containing residues (or water) to zinc hound histidines is almost universal in our dataset and defines the elec-His-Zn motif. Analysis of the stereochemistry shows that carboxyl elec-His-Zn motifs are geometrically rigid, while water elec-His-Zn motifs show the most geometrical variation. As catalytic motifs have a higher proportion of carboxyl elec atoms than structural motifs, they provide a more rigid framework for zinc binding. This is understood biologically, as a small distortion in the zinc position in an enzyme can have serious consequences on the enzymatic reaction. We also analyze the sequence pattern of the zinc ligands and residues that provide elecs, and identify conserved hydrophobic residues in the endopeptidases that also appear to contribute to stabilizing the catalytic zinc site. A zinc binding template in protein crystal structures is derived from these observations.
引用
收藏
页码:1700 / 1716
页数:17
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