Fendel Uta, Tocilescu Maja A, Kerscher Stefan, Brandt Ulrich
Johann Wolfgang Goethe-Universität, Fachbereich Medizin, Zentrum der Biologischen Chemie, Molekulare Bioenergetik, Cluster of Excellence Frankfurt Macromolecular Complexes, Frankfurt am Main, Germany.
Biochim Biophys Acta. 2008 Jul-Aug;1777(7-8):660-5. doi: 10.1016/j.bbabio.2008.04.033. Epub 2008 Apr 30.
Numerous hydrophobic and amphipathic compounds including several detergents are known to inhibit the ubiquinone reductase reaction of respiratory chain complex I (proton pumping NADH:ubiquinone oxidoreductase). Guided by the X-ray structure of the peripheral arm of complex I from Thermus thermophilus we have generated a large collection of site-directed mutants in the yeast Yarrowia lipolytica targeting the proposed ubiquinone and inhibitor binding pocket of this huge multiprotein complex at the interface of the 49-kDa and PSST subunits. We could identify a number of residues where mutations changed I(50) values for representatives from all three groups of hydrophobic inhibitors. Many mutations around the domain of the 49-kDa subunit that is homologous to the [NiFe] centre binding region of hydrogenase conferred resistance to DQA (class I/type A) and rotenone (class II/type B) indicating a wider overlap of the binding sites for these two types of inhibitors. In contrast, a region near iron-sulfur cluster N2, where the binding of the n-alkyl-polyoxyethylene-ether detergent C(12)E(8) (type C) was exclusively affected, appeared comparably well separated. Taken together, our data provide structure-based support for the presence of distinct but overlapping binding sites for hydrophobic inhibitors possibly extending into the ubiquinone reduction site of mitochondrial complex I.
已知包括几种去污剂在内的许多疏水和两亲性化合物会抑制呼吸链复合体I(质子泵NADH:泛醌氧化还原酶)的泛醌还原酶反应。以嗜热栖热菌复合体I外周臂的X射线结构为指导,我们在解脂耶氏酵母中针对这个巨大的多蛋白复合体在49-kDa亚基和PSST亚基界面处的假定泛醌和抑制剂结合口袋,生成了大量定点突变体。我们能够鉴定出一些残基,在这些残基处的突变改变了所有三类疏水抑制剂代表的I(50)值。49-kDa亚基中与氢化酶的[NiFe]中心结合区域同源的结构域周围的许多突变赋予了对DQA(I类/A型)和鱼藤酮(II类/B型)的抗性,表明这两种类型抑制剂的结合位点有更广泛的重叠。相比之下,铁硫簇N2附近的一个区域,其中正烷基聚氧乙烯醚去污剂C(12)E(8)(C型)的结合仅受到影响,看起来相对分隔良好。综上所述,我们的数据为疏水抑制剂存在不同但重叠的结合位点提供了基于结构的支持,这些位点可能延伸到线粒体复合体I的泛醌还原位点。