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一氧化碳肌红蛋白中远端残基与一氧化碳的相互作用:三种远端突变体的分子动力学研究

Distal residue-CO interaction in carbonmonoxy myoglobins: a molecular dynamics study of three distal mutants.

作者信息

Jewsbury P, Kitagawa T

机构信息

Institute for Molecular Science, Okazaki, Japan.

出版信息

Biophys J. 1995 Apr;68(4):1283-94. doi: 10.1016/S0006-3495(95)80302-4.

Abstract

Six 90-ps molecular dynamics trajectories, two for each of three distal mutants of sperm whale carbonmonoxy myoglobin, are reported; solvent waters within 16 A of the active site have been included. In both His64GIn trajectories, the distal side chain remains part of the heme pocket, forming a "closed" conformation similar to that of the wild type 64N delta H tautomer. Despite a connectivity more closely resembling the N epsilon H histidine tautomer, close interactions with the carbonyl ligand similar to those observed for the wild type 64N epsilon H tautomer are prevented in this mutant by repulsive interactions between the carbonyl O and the 64O epsilon. The aliphatic distal side chain of the His64Leu mutant shows little interaction with the carbonyl ligand in either His64Leu trajectory. Solvent water molecules move into and out of the active site in the His64Gly mutant trajectories; during all the other carbonmonoxy myoglobin trajectories, including the wild type distal tautomers considered in an earlier work, solvent molecules rarely encroach closer than 6 A of the active site. These results are consistent with a recent structural interpretation of the wild type infrared spectrum, and the current reinterpretation that the distal-ligand interaction in carbonmonoxy myoglobin is largely electrostatic, not steric, in nature.

摘要

报道了6条90皮秒的分子动力学轨迹,即抹香鲸一氧化碳肌红蛋白三个远端突变体各两条;活性位点16埃范围内的溶剂水分子也被纳入。在两条His64GIn轨迹中,远端侧链仍为血红素口袋的一部分,形成类似于野生型64NδH互变异构体的“封闭”构象。尽管连接性更类似于NεH组氨酸互变异构体,但该突变体中羰基O与64Oε之间的排斥相互作用阻止了与羰基配体的紧密相互作用,而这种相互作用在野生型64NεH互变异构体中是可以观察到的。在His64Leu突变体的两条轨迹中,His64Leu突变体的脂肪族远端侧链与羰基配体几乎没有相互作用。在His64Gly突变体轨迹中,溶剂水分子进出活性位点;在所有其他一氧化碳肌红蛋白轨迹中,包括早期工作中考虑的野生型远端互变异构体,溶剂分子很少侵入到距离活性位点6埃以内的区域。这些结果与最近对野生型红外光谱的结构解释一致,也与目前重新解释的一氧化碳肌红蛋白中远端配体相互作用本质上主要是静电作用而非空间作用相一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf32/1282024/c4bbbfabd415/biophysj00063-0087-a.jpg

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