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血红蛋白中卟啉远端口袋对硝酸根结合取向和反应性的影响:抹香鲸肌红蛋白的实例研究。

Influence of the heme distal pocket on nitrite binding orientation and reactivity in Sperm Whale myoglobin.

机构信息

Department of Biological Sciences, Centre for Molecular and Structural Biochemistry, University of East Anglia, Norwich Research Park, Norwich NR4 7TJ, U.K.

Department of Chemistry, University of East Anglia, Norwich Research Park, Norwich NR4 7TJ, U.K.

出版信息

Biochem J. 2021 Feb 26;478(4):927-942. doi: 10.1042/BCJ20200596.

Abstract

Nitrite binding to recombinant wild-type Sperm Whale myoglobin (SWMb) was studied using a combination of spectroscopic methods including room-temperature magnetic circular dichroism. These revealed that the reactive species is free nitrous acid and the product of the reaction contains a nitrite ion bound to the ferric heme iron in the nitrito- (O-bound) orientation. This exists in a thermal equilibrium with a low-spin ground state and a high-spin excited state and is spectroscopically distinct from the purely low-spin nitro- (N-bound) species observed in the H64V SWMb variant. Substitution of the proximal heme ligand, histidine-93, with lysine yields a novel form of myoglobin (H93K) with enhanced reactivity towards nitrite. The nitrito-mode of binding to the ferric heme iron is retained in the H93K variant again as a thermal equilibrium of spin-states. This proximal substitution influences the heme distal pocket causing the pKa of the alkaline transition to be lowered relative to wild-type SWMb. This change in the environment of the distal pocket coupled with nitrito-binding is the most likely explanation for the 8-fold increase in the rate of nitrite reduction by H93K relative to WT SWMb.

摘要

使用包括室温磁圆二色性在内的多种光谱方法研究了亚硝酸盐与重组型抹香鲸肌红蛋白(SWMb)的结合情况。结果表明,反应的活性物质是游离亚硝酸,反应产物包含一个以亚硝基(O 配位)方式与铁血红素铁结合的亚硝酸盐离子。这种状态与低自旋基态和高自旋激发态处于热平衡状态,与在 H64V SWMb 变体中观察到的纯低自旋硝酰基(N 配位)物种在光谱上明显不同。取代近侧血红素配体组氨酸-93 为赖氨酸,得到一种新型肌红蛋白(H93K),其对亚硝酸盐的反应性增强。亚铁血红素铁的亚硝基结合模式在 H93K 变体中再次以自旋态的热平衡形式存在。这种近侧取代影响血红素远侧口袋,导致碱性转变的 pKa 值相对于野生型 SWMb 降低。这种远侧口袋环境的变化与亚硝基结合一起,很可能是 H93K 相对于 WT SWMb 亚硝酸盐还原速率增加 8 倍的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/151c/7925009/c9e279c661b1/BCJ-478-927-g0001.jpg

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