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对Qo位点抑制剂具有抗性的泛醇-细胞色素c2氧化还原酶突变体:对泛醌和泛醇亲和力及催化作用的影响

Mutants of ubiquinol-cytochrome c2 oxidoreductase resistant to Qo site inhibitors: consequences for ubiquinone and ubiquinol affinity and catalysis.

作者信息

Robertson D E, Daldal F, Dutton P L

机构信息

Department of Biochemistry and Biophysics, School of Medicine, University of Pennsylvania, Philadelphia 19104.

出版信息

Biochemistry. 1990 Dec 25;29(51):11249-60. doi: 10.1021/bi00503a014.

Abstract

Seven single-site mutants in six residues of the cyt b polypeptide of Rhodobacter capsulatus selected for resistance to the Qo site inhibitors stigmatellin, myxothiazol, or mucidin [Daldal, F., Tokito, M.K., Davidson, E., & Faham, M. (1989) EMBO J. 8, 3951-3961] have been characterized by using optical and EPR spectroscopy and single-turnover kinetic analysis. The strains were compared with wild-type strain MT1131 and with the Ps- strain R126 (G158D), which is dysfunctional in its Qo site [Robertson, D.E., Davidson, E., Prince, R.C., van den Berg, W.H., Marrs, B.L., & Dutton, P.L. (1986) J. Biol. Chem. 261, 584-591]. Mutants selected for stigmatellin resistance induced a weakening in the binding of the inhibitor without discernible loss of ubiquinone(Q)/ubiquinol(QH2) binding affinity to the Qo site or kinetic impairment to catalysis. Mutants selected for myxothiazol or mucidin resistance, inducing weakening of inhibitor binding, all displayed impaired rates of Qo site catalysis: The most severe cases (F144L, F144S) displayed loss of affinity for Q, and evidence suggests that parallel loss of affinity for the substrate QH2 was incurred in these strains. The results provide a view of the nature of the interaction of Q and QH2 of the Qpool with the Qo site. Consideration of the mutational substitutions and their structural positions along with comparisons with the QA and QB sites of the photosynthetic reaction center suggests a model for the structure of the Qo site.

摘要

从荚膜红细菌细胞色素b多肽的六个残基中筛选出的七个单一位点突变体,对醌氧化位点(Qo)抑制剂阿霉素、粘噻唑或杀稻瘟菌素具有抗性[达尔达尔,F.,户时,M.K.,戴维森,E.,& 法哈姆,M.(1989年)《欧洲分子生物学组织杂志》8,3951 - 3961],已通过光学和电子顺磁共振光谱以及单周转动力学分析进行了表征。将这些菌株与野生型菌株MT1131以及在其Qo位点功能失调的Ps - 菌株R126(G158D)进行了比较[罗伯逊,D.E.,戴维森,E.,普林斯,R.C.,范登伯格,W.H.,马尔斯,B.L.,& 达顿,P.L.(1986年)《生物化学杂志》261,584 - 591]。筛选出的对阿霉素具有抗性的突变体导致抑制剂结合减弱,而对泛醌(Q)/泛醇(QH2)与Qo位点的结合亲和力没有明显损失,对催化作用也没有动力学损伤。筛选出的对粘噻唑或杀稻瘟菌素具有抗性的突变体,导致抑制剂结合减弱,均表现出Qo位点催化速率受损:最严重的情况(F144L,F144S)表现出对Q的亲和力丧失,有证据表明这些菌株对底物QH2的亲和力也同时丧失。这些结果提供了关于Q池中的Q和QH2与Qo位点相互作用性质的观点。考虑到突变取代及其结构位置,并与光合反应中心的QA和QB位点进行比较,提出了一个Qo位点结构模型。

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