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磷脂在呼吸细胞色素bc(1)复合物催化及超复合物形成中的作用。

Role of phospholipids in respiratory cytochrome bc(1) complex catalysis and supercomplex formation.

作者信息

Wenz Tina, Hielscher Ruth, Hellwig Petra, Schägger Hermann, Richers Sebastian, Hunte Carola

机构信息

Max Planck Institute of Biophysics, Department of Molecular Membrane Biology, D-60438 Frankfurt, Germany.

出版信息

Biochim Biophys Acta. 2009 Jun;1787(6):609-16. doi: 10.1016/j.bbabio.2009.02.012. Epub 2009 Feb 28.

Abstract

Specific protein-lipid interactions have been identified in X-ray structures of membrane proteins. The role of specifically bound lipid molecules in protein function remains elusive. In the current study, we investigated how phospholipids influence catalytic, spectral and electrochemical properties of the yeast respiratory cytochrome bc(1) complex and how disruption of a specific cardiolipin binding site in cytochrome c(1) alters respiratory supercomplex formation in mitochondrial membranes. Purified yeast cytochrome bc(1) complex was treated with phospholipase A(2). The lipid-depleted enzyme was stable but nearly catalytically inactive. The absorption maxima of the reduced b-hemes were blue-shifted. The midpoint potentials of the b-hemes of the delipidated complex were shifted from -52 to -82 mV (heme b(L)) and from +113 to -2 mV (heme b(H)). These alterations could be reversed by reconstitution of the delipidated enzyme with a mixture of asolectin and cardiolipin, whereas addition of the single components could not reverse the alterations. We further analyzed the role of a specific cardiolipin binding site (CL(i)) in supercomplex formation by site-directed mutagenesis and BN-PAGE. The results suggested that cardiolipin stabilizes respiratory supercomplex formation by neutralizing the charges of lysine residues in the vicinity of the presumed interaction domain between cytochrome bc(1) complex and cytochrome c oxidase. Overall, the study supports the idea, that enzyme-bound phospholipids can play an important role in the regulation of protein function and protein-protein interaction.

摘要

在膜蛋白的X射线结构中已鉴定出特定的蛋白质-脂质相互作用。特异性结合的脂质分子在蛋白质功能中的作用仍不清楚。在当前的研究中,我们研究了磷脂如何影响酵母呼吸细胞色素bc(1)复合物的催化、光谱和电化学性质,以及细胞色素c(1)中特定的心磷脂结合位点的破坏如何改变线粒体膜中呼吸超复合物的形成。用磷脂酶A(2)处理纯化的酵母细胞色素bc(1)复合物。脂质耗尽的酶是稳定的,但几乎没有催化活性。还原型b-血红素的吸收最大值发生蓝移。脂质去除复合物的b-血红素的中点电位从-52 mV移至-82 mV(血红素b(L)),从+113 mV移至-2 mV(血红素b(H))。这些改变可以通过用大豆卵磷脂和心磷脂的混合物重构脂质去除的酶来逆转,而添加单一成分则不能逆转这些改变。我们通过定点诱变和BN-PAGE进一步分析了特定的心磷脂结合位点(CL(i))在超复合物形成中的作用。结果表明,心磷脂通过中和细胞色素bc(1)复合物与细胞色素c氧化酶之间假定相互作用域附近赖氨酸残基的电荷来稳定呼吸超复合物的形成。总体而言,该研究支持这样一种观点,即与酶结合的磷脂可以在蛋白质功能和蛋白质-蛋白质相互作用的调节中发挥重要作用。

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