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复合物III将超氧化物释放到线粒体内膜的两侧。

Complex III releases superoxide to both sides of the inner mitochondrial membrane.

作者信息

Muller Florian L, Liu Yuhong, Van Remmen Holly

机构信息

Department of Cellular Biology, University of Texas Health Science Center, San Antonio, TX 78284-7762, USA.

出版信息

J Biol Chem. 2004 Nov 19;279(47):49064-73. doi: 10.1074/jbc.M407715200. Epub 2004 Aug 17.

Abstract

Mechanisms of mitochondrial superoxide formation remain poorly understood despite considerable medical interest in oxidative stress. Superoxide is produced from both Complexes I and III of the electron transport chain, and once in its anionic form it is too strongly charged to readily cross the inner mitochondrial membrane. Thus, superoxide production exhibits a distinct membrane sidedness or "topology." In the present work, using measurements of hydrogen peroxide (Amplex red) as well as superoxide (modified Cypridina luciferin analog and aconitase), we demonstrate that Complex I-dependent superoxide is exclusively released into the matrix and that no detectable levels escape from intact mitochondria. This finding fits well with the proposed site of electron leak at Complex I, namely the iron-sulfur clusters of the (matrix-protruding) hydrophilic arm. Our data on Complex III show direct extramitochondrial release of superoxide, but measurements of hydrogen peroxide production revealed that this could only account for approximately 50% of the total electron leak even in mitochondria lacking CuZn-superoxide dismutase. We posit that the remaining approximately 50% of the electron leak must be due to superoxide released to the matrix. Measurements of (mitochondrial matrix) aconitase inhibition, performed in the presence of exogenous superoxide dismutase and catalase, confirmed this hypothesis. Our data indicate that Complex III can release superoxide to both sides of the inner mitochondrial membrane. The locus of superoxide production in Complex III, the ubiquinol oxidation site, is situated immediately next to the intermembrane space. This explains extramitochondrial release of superoxide but raises the question of how superoxide could reach the matrix. We discuss two models explaining this result.

摘要

尽管氧化应激在医学上备受关注,但线粒体超氧化物形成的机制仍未得到充分理解。超氧化物由电子传递链的复合体I和复合体III产生,一旦呈阴离子形式,其电荷太强而难以轻易穿过线粒体内膜。因此,超氧化物的产生表现出明显的膜侧性或“拓扑结构”。在本研究中,我们通过测量过氧化氢(Amplex red)以及超氧化物(修饰的海萤荧光素类似物和乌头酸酶),证明复合体I依赖的超氧化物仅释放到基质中,完整的线粒体没有可检测到的超氧化物泄漏。这一发现与复合体I处电子泄漏的推测位点,即(突出于基质的)亲水臂的铁硫簇,非常吻合。我们关于复合体III的数据显示超氧化物直接释放到线粒体外,但过氧化氢产生的测量结果表明,即使在缺乏铜锌超氧化物歧化酶的线粒体中,这也仅占总电子泄漏的约50%。我们推测,其余约50%的电子泄漏必定是由于超氧化物释放到基质中。在存在外源性超氧化物歧化酶和过氧化氢酶的情况下进行的(线粒体基质)乌头酸酶抑制测量证实了这一假设。我们的数据表明,复合体III可以将超氧化物释放到线粒体内膜的两侧。复合体III中超氧化物产生的位点,即泛醇氧化位点,紧邻膜间隙。这解释了超氧化物的线粒体外释放,但提出了超氧化物如何到达基质的问题。我们讨论了解释这一结果的两种模型。

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