Mitochondrial disease-related mutations at the cytochrome b-iron-sulfur protein (ISP) interface: Molecular effects on the large-scale motion of ISP and superoxide generation studied in Rhodobacter capsulatus cytochrome bc1

被引:10
作者
Ekiert, Robert [1 ]
Borek, Arkadiusz [1 ]
Kuleta, Patryk [1 ]
Czernek, Justyna [1 ]
Osyczka, Artur [1 ]
机构
[1] Jagiellonian Univ, Fac Biochem Biophys & Biotechnol, Dept Mol Biophys, PL-30387 Krakow, Poland
来源
BIOCHIMICA ET BIOPHYSICA ACTA-BIOENERGETICS | 2016年 / 1857卷 / 08期
基金
英国惠康基金;
关键词
Cytochrome bc(1); Mitochondrial complex III; Mitochondrial diseases; Reactive oxygen species; Electron transfer; Domain movement; CYCLE BYPASS REACTIONS; SUBUNIT HINGE REGION; OXIDATION Q(O) SITE; COMPLEX-III; 2FE-2S CLUSTER; Q0; SITE; MECHANISM; CHAIN; QUINONE; BINDING;
D O I
10.1016/j.bbabio.2016.03.022
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
One of the important elements of operation of cytochrome bc1 (mitochondria) respiratory complex III) is a large scale movement of the head domain of iron-sulfur protein (ISP-HD), which connects the quinol oxidation site (Q(o)) located within the cytochrome b, with the outermost heme c(1) of cytochrome c(1). Several mitochondria! disease-related mutations in cytochrome b are located at the cytochrome b-ISP-HD interface, thus their molecular effects can be associated with altered motion of ISP-HD. Using purple bacterial model, we recently showed that one of such mutations - G167P shifts the equilibrium position of ISP-HD towards positions remote from the Q(o) site as compared to the native enzyme [Borek et al., J. Biol. Chem. 290 (2015) 23781-237921. This resulted in the enhanced propensity of the mutant to generate reactive oxygen species (ROS) which was explained on the basis of the model evoking "semireverse" electron transfer from heme b(L) to quinone. Here we examine another mutation from that group - G332D (G290D in human), finding that it also shifts the equilibrium position of ISP-HD in the same direction, however displays less of the enhancement in ROS production. We provide spectroscopic indication that G332D might affect the electrostatics of interaction between cytochrome b and ISP-HD. This effect, in light of the measured enzymatic activities and electron transfer rates, appears to be less severe than structural distortion caused by proline in G167P mutant. Comparative analysis of the effects of G332D and G167P confirms a general prediction that mutations located at the cytochrome b-ISP-HD interface influence the motion of ISP-HD and indicates that "pushing" ISP-HD away from the Q(o) site is the most likely outcome of this influence. It can also be predicted that an increase in ROS production associated with the "pushing" effect is quite sensitive to overall severity of this change with more active mutants being generally more protected against elevated ROS. This article is part of a Special Issue entitled 'EBEC 2016: 19th European Bioenergetics Conference, Riva del Garda, Italy, July 2-6, 2016', edited by Prof. Paolo Bernardi. (C) 2016 The Authors. Published by Elsevier B.V.
引用
收藏
页码:1102 / 1110
页数:9
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