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细胞色素bc1复合物[2Fe-2S]簇及其在Qo位点与泛醌和泛氢醌的相互作用:双占据Qo位点模型

Cytochrome bc1 complex [2Fe-2S] cluster and its interaction with ubiquinone and ubihydroquinone at the Qo site: a double-occupancy Qo site model.

作者信息

Ding H, Robertson D E, Daldal F, Dutton P L

机构信息

Johnson Research Foundation, Department of Biochemistry and Biophysics, University of Pennsylvania, Philadelphia 19104.

出版信息

Biochemistry. 1992 Mar 31;31(12):3144-58. doi: 10.1021/bi00127a015.

Abstract

The ubiquinone complement of Rhodobacter capsulatus chromatophore membranes has been characterized by its isooctane solvent extractability and electrochemistry; we find that the main ubiquinone pool (Qpool) amounts to about 80% of the total ubiquinone and has an Em7 value close to 90 mV. To investigate the interactions of ubiquinone with the cyt bc1 complex, we have examined the distinctive EPR line shapes of the [2Fe-2S] cluster of the cyt bc1 complex when the Qpool-cyt bc1 complex interactions are modulated by changing the numbers of Q or QH2 present (by solvent extraction and reconstitution), by the exposure of the [2Fe-2S] to the Qpool in different redox states, by the presence of inhibitors specific for the Qo site (myxothiazol and stigmatellin) and Qi site (antimycin), and by site-specific mutations of side chains of the cyt b polypeptide (mutants F144L and F144G) previously identified as important for Qo site structure. Evidence suggests that the Qo site can accommodate two ubiquinone molecules. One (designated Qos) is bound relatively strongly and is second only to the ubiquinone of the QA site of the reaction center in its resistance to solvent extraction. In this strong interaction, the Qo site binds Q and QH2 with approximately equal affinities. Their bound states are distinguished by their effects on the [2Fe-2S] cluster spectral feature at gx at 1.783 (Q) and gx at 1.777 (QH2); titration of the line-shape change reveals an Em7 value of approximately 95 mV. The other molecule (Qow) is bound more weakly, in the same range as the ubiquinone of the QB site of the reaction center. Again, the affinities of the Q form (gx at 1.800) and QH2 form (gx at 1.777) are nearly equal, and the Em7 value measured is approximately 80 mV. These results are discussed in terms of earlier EPR analyses of the cyt bc1 complexes of other systems. A Qo site double-occupancy model is considered that builds on the previous model based on Qo site mutants [Robertson, D. E., Daldal, F.,& Dutton, P. L. (1990) Biochemistry 29, 11249-11260] and includes the recent suggestion that two of the [2F3-2S] cluster ligands of the R. capsulatus cyt bc1 complex are histidines [Gurbiel, R. J. Ohnishi, T., Robertson, D. E. Daldal, F., & Hoffman, B. M. (1991) Biochemistry 30, 11579-11584]. We speculate that the cyt bc1 complex complexes a full enzymatic turnover without necessary exchange of ubiquinone with the Qpool.

摘要

荚膜红细菌(Rhodobacter capsulatus)载色体膜中的泛醌成分已通过其异辛烷溶剂可萃取性和电化学性质进行了表征;我们发现主要的泛醌池(Q池)约占总泛醌的80%,其Em7值接近90 mV。为了研究泛醌与细胞色素bc1复合物的相互作用,我们通过改变存在的Q或QH2的数量(通过溶剂萃取和重组)、使[2Fe-2S]暴露于不同氧化还原状态的Q池、存在对Qo位点(粘噻唑和柱晶白霉素)和Qi位点(抗霉素)具有特异性的抑制剂以及细胞色素b多肽侧链的位点特异性突变(先前鉴定对Qo位点结构很重要的突变体F144L和F144G)来调节Q池-细胞色素bc1复合物的相互作用,从而研究了细胞色素bc1复合物[2Fe-2S]簇独特的电子顺磁共振(EPR)线形。有证据表明Qo位点可以容纳两个泛醌分子。一个(称为Qos)结合相对较强,在对溶剂萃取的抗性方面仅次于反应中心QA位点的泛醌。在这种强相互作用中,Qo位点以大致相等的亲和力结合Q和QH2。它们的结合状态通过它们对gx处1.783的[2Fe-2S]簇光谱特征(Q)和gx处1.777的[2Fe-2S]簇光谱特征(QH2)的影响来区分;对线形变化的滴定揭示了约95 mV的Em7值。另一个分子(Qow)结合较弱,与反应中心QB位点的泛醌处于相同范围。同样,Q形式(gx处1.800)和QH2形式(gx处1.777)的亲和力几乎相等,测得的Em7值约为80 mV。根据其他系统的细胞色素bc1复合物的早期EPR分析对这些结果进行了讨论。考虑了一个基于Qo位点突变体的先前模型构建的Qo位点双占据模型[罗伯逊,D.E.,达尔达尔,F.,& 达顿,P.L.(1990)生物化学29,11249 - 11260],并包括最近的建议,即荚膜红细菌细胞色素bc1复合物的[2F3-2S]簇配体中有两个是组氨酸[古尔比尔,R.J.,大西,T.,罗伯逊,D.E.,达尔达尔,F.,& 霍夫曼,B.M.(1991)生物化学30,11579 - 11584]。我们推测细胞色素bc1复合物在没有与Q池进行泛醌必要交换的情况下完成完整的酶促周转。

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