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黄素细胞色素b2的结构域间铰链在蛋白质内和蛋白质间电子传递中的作用。

Role of the interdomain hinge of flavocytochrome b2 in intra- and inter-protein electron transfer.

作者信息

Sharp R E, White P, Chapman S K, Reid G A

机构信息

Institute of Cell and Molecular Biology, Edinburgh Centre for Molecular Recognition, University of Edinburgh, Scotland, U.K.

出版信息

Biochemistry. 1994 May 3;33(17):5115-20. doi: 10.1021/bi00183a015.

Abstract

The two distinct domains of flavocytochrome b2 (L-lactate:cytochrome c oxidoreductase, EC 1.1.2.3) are connected by a hinge peptide. Kinetics experiments [White, P., Manson, F. D. C., Brunt, C. E., Chapman, S. K., & Reid, GA. (1993) Biochem. J. 291, 89-94] have illustrated the importance for efficient interdomain electron transfer of maintaining the structural integrity of the hinge. To probe the role of the hinge in a more subtle manner, we have constructed a mutant enzyme, H delta 3, which has a three amino acid deletion in the hinge region. Intra- and inter-protein electron transfer within H delta 3 flavocytochrome b2 and the H delta 3:cytochrome c redox complex was investigated by steady-state and stopped-flow kinetics analysis. The H delta 3 mutant enzyme remains a good L-lactate dehydrogenase, as is evident from steady-state experiments with ferricyanide as electron acceptor (40% less active than wild-type enzyme) and stopped-flow experiments monitoring flavin reduction (15% less active than wild-type enzyme). The global effect of the deletion is to lower the enzyme's effectiveness as a cytochrome c reductase. This property of the H delta 3 enzyme is manifested at two electron-transfer steps on the catalytic cycle of flavocytochrome b2. First, the rate of heme reduction has fallen 5-fold in H delta 3 compared with the wild-type enzyme (from 445 to 91 s-1), due to poor interdomain electron transfer from flavin to heme.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

黄素细胞色素b2(L-乳酸:细胞色素c氧化还原酶,EC 1.1.2.3)的两个不同结构域由一个铰链肽相连。动力学实验[怀特,P.,曼森,F. D. C.,布伦特,C. E.,查普曼,S. K.,& 里德,G. A.(1993年)《生物化学杂志》291卷,89 - 94页]已经表明,维持铰链的结构完整性对于高效的结构域间电子转移至关重要。为了以更微妙的方式探究铰链的作用,我们构建了一种突变酶Hδ3,它在铰链区域有三个氨基酸缺失。通过稳态和停流动力学分析研究了Hδ3黄素细胞色素b2以及Hδ3:细胞色素c氧化还原复合物内的蛋白质内和蛋白质间电子转移。Hδ3突变酶仍然是一种良好的L-乳酸脱氢酶,这从以铁氰化物作为电子受体的稳态实验(活性比野生型酶低40%)以及监测黄素还原的停流实验(活性比野生型酶低15%)中可以明显看出。缺失的总体影响是降低了该酶作为细胞色素c还原酶的效能。Hδ3酶的这一特性在黄素细胞色素b2催化循环的两个电子转移步骤中表现出来。首先,与野生型酶相比,Hδ3中血红素还原速率下降了5倍(从445降至91 s⁻¹),这是由于从黄素到血红素的结构域间电子转移不佳所致。(摘要截取自250字)

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