首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Domain conformational switch of the iron-sulfur protein in cytochrome bc1 complex is induced by the electron transfer from cytochrome bL to bH.
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Domain conformational switch of the iron-sulfur protein in cytochrome bc1 complex is induced by the electron transfer from cytochrome bL to bH.

机译:细胞色素bc1复合物中铁硫蛋白的结构域构象转换是由电子从细胞色素bL转移到bH引起的。

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摘要

Intensive biochemical, biophysical and structural studies of the cytochrome (cyt) bc(1) complex in the past have led to the formulation of the "protonmotive Q-cycle" mechanism for electron and proton transfer in this vitally important complex. The key step of this mechanism is the separation of electrons during the oxidation of a substrate quinol at the Q(P) site with both electrons transferred simultaneously to ISP and cyt b(L) when the extrinsic domain of ISP (ISP-ED) is located at the b-position. Pre-steady state fast kinetic analysis of bc(1) demonstrates that the reduced ISP-ED moves to the c(1)-position to reduce cyt c(1) only after the reduced cyt b(L) is oxidized by cyt b(H). However, the question of how the conformational switch of ISP-ED is initiated remains unanswered. The results obtained from analysis of inhibitory efficacy and binding affinity of two types of Q(P) site inhibitors, Pm and Pf, under various redox states of the bc(1) complex, suggest that the electron transfer from heme b(L) to b(H) is the driving force for the releasing of the reduced ISP-ED from the b-position to c(1)-position to reduce cyt c(1).
机译:过去对细胞色素(cyt)bc(1)配合物进行了深入的生化,生物物理和结构研究,从而导致了在该至关重要的配合物中电子和质子转移的“质子Q循环”机制的形成。该机制的关键步骤是在底物喹诺酮在Q(P)位点氧化过程中分离电子,当ISP(ISP-ED)的外在结构域为ISP时,两个电子同时转移到ISP和cyt b(L)。位于b位置。 bc(1)的稳态前快速动力学分析表明,只有在还原的cyt b(L)被cyt b()氧化后,还原的ISP-ED才会移动到c(1)-位以还原cyt c(1)。 H)。但是,如何启动ISP-ED的构象转换的问题仍然没有答案。通过分析bc(1)络合物在各种氧化还原状态下两种Q(P)站点抑制剂Pm和Pf的抑制效力和结合亲和力获得的结果表明,电子从血红素b(L)转移至b(H)是用于将还原的ISP-ED从b-位置释放到c(1)-位置以还原cyt c(1)的驱动力。

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