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基于里氏铁硫蛋白构象介导的氧化型和还原型荚膜红细菌细胞色素c2与细胞色素bc1复合物差异结合的表面等离子体波导共振光谱证据

Plasmon waveguide resonance spectroscopic evidence for differential binding of oxidized and reduced Rhodobacter capsulatus cytochrome c2 to the cytochrome bc1 complex mediated by the conformation of the Rieske iron-sulfur protein.

作者信息

Devanathan S, Salamon Z, Tollin G, Fitch J C, Meyer T E, Berry E A, Cusanovich M A

机构信息

Department of Biochemistry and Molecular Biophysics, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

Biochemistry. 2007 Jun 19;46(24):7138-45. doi: 10.1021/bi602649u. Epub 2007 May 22.

Abstract

The dissociation constants for the binding of Rhodobacter capsulatus cytochrome c2 and its K93P mutant to the cytochrome bc1 complex embedded in a phospholipid bilayer were measured by plasmon waveguide resonance spectroscopy in the presence and absence of the inhibitor stigmatellin. The reduced form of cytochrome c2 strongly binds to reduced cytochrome bc1 (Kd = 0.02 microM) but binds much more weakly to the oxidized form (Kd = 3.1 microM). In contrast, oxidized cytochrome c2 binds to oxidized cytochrome bc1 in a biphasic fashion with Kd values of 0.11 and 0.58 microM. Such a biphasic interaction is consistent with binding to two separate sites or conformations of oxidized cytochrome c2 and/or cytochrome bc1. However, in the presence of stigmatellin, we find that oxidized cytochrome c2 binds to oxidized cytochrome bc1 in a monophasic fashion with high affinity (Kd = 0.06 microM) and reduced cytochrome c2 binds less strongly (Kd = 0.11 microM) but approximately 30-fold more tightly than in the absence of stigmatellin. Structural studies with cytochrome bc1, with and without the inhibitor stigmatellin, have led to the proposal that the Rieske protein is mobile, moving between the cytochrome b and cytochrome c1 components during turnover. In one conformation, the Rieske protein binds near the heme of cytochrome c1, while the cytochrome c2 binding site is also near the cytochrome c1 heme but on the opposite side from the Rieske site, where cytochrome c2 cannot directly interact with Rieske. However, the inhibitor, stigmatellin, freezes the Rieske protein iron-sulfur cluster in a conformation proximal to cytochrome b and distal to cytochrome c1. We conclude from this that the dual conformation of the Rieske protein is primarily responsible for biphasic binding of oxidized cytochrome c2 to cytochrome c1. This optimizes turnover by maximizing binding of the substrate, oxidized cytochrome c2, when the iron-sulfur cluster is proximal to cytochrome b and minimizing binding of the product, reduced cytochrome c2, when it is proximal to cytochrome c1.

摘要

利用表面等离子体波导共振光谱法,在存在和不存在抑制剂柱晶白霉素的情况下,测定了荚膜红细菌细胞色素c2及其K93P突变体与嵌入磷脂双层中的细胞色素bc1复合物结合的解离常数。还原型细胞色素c2与还原型细胞色素bc1强烈结合(Kd = 0.02 μM),但与氧化型细胞色素bc1的结合则弱得多(Kd = 3.1 μM)。相反,氧化型细胞色素c2以双相方式与氧化型细胞色素bc1结合,Kd值分别为0.11和0.58 μM。这种双相相互作用与氧化型细胞色素c2和/或细胞色素bc1的两个不同位点或构象的结合一致。然而,在柱晶白霉素存在的情况下,我们发现氧化型细胞色素c2以单相方式与氧化型细胞色素bc1高亲和力结合(Kd = 0.06 μM),还原型细胞色素c2的结合较弱(Kd = 0.11 μM),但比不存在柱晶白霉素时紧密约30倍。对有或没有抑制剂柱晶白霉素的细胞色素bc1进行的结构研究表明, Rieske蛋白是可移动的,在周转过程中在细胞色素b和细胞色素c1组分之间移动。在一种构象中, Rieske蛋白结合在细胞色素c1血红素附近,而细胞色素c2结合位点也在细胞色素c1血红素附近,但在与Rieske位点相对的一侧,细胞色素c2不能直接与Rieske相互作用。然而,抑制剂柱晶白霉素将Rieske蛋白的铁硫簇冻结在靠近细胞色素b且远离细胞色素c1的构象中。我们由此得出结论,Rieske蛋白的双重构象主要负责氧化型细胞色素c2与细胞色素c1的双相结合。当铁硫簇靠近细胞色素b时,这通过最大化底物氧化型细胞色素c2的结合来优化周转,而当铁硫簇靠近细胞色素c1时,最小化产物还原型细胞色素c2的结合。

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