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将线粒体ND3亚基鉴定为参与呼吸复合体I活性/非活性酶转变的结构成分。

Identification of the mitochondrial ND3 subunit as a structural component involved in the active/deactive enzyme transition of respiratory complex I.

作者信息

Galkin Alexander, Meyer Björn, Wittig Ilka, Karas Michael, Schägger Hermann, Vinogradov Andrei, Brandt Ulrich

机构信息

Molecular Bioenergetics Group, Cluster of Excellence Frankfurt Macromolecular complexes, Medical School, Johann Wolfgang Goethe-Universität, Theodor-Stern-Kai 7, Frankfurt am Main, Germany.

出版信息

J Biol Chem. 2008 Jul 25;283(30):20907-13. doi: 10.1074/jbc.M803190200. Epub 2008 May 23.

Abstract

Mitochondrial complex I (NADH:ubiquinone oxidoreductase) undergoes reversible deactivation upon incubation at 30-37 degrees C. The active/deactive transition could play an important role in the regulation of complex I activity. It has been suggested recently that complex I may become modified by S-nitrosation under pathological conditions during hypoxia or when the nitric oxide:oxygen ratio increases. Apparently, a specific cysteine becomes accessible to chemical modification only in the deactive form of the enzyme. By selective fluorescence labeling and proteomic analysis, we have identified this residue as cysteine-39 of the mitochondrially encoded ND3 subunit of bovine heart mitochondria. Cysteine-39 is located in a loop connecting the first and second transmembrane helix of this highly hydrophobic subunit. We propose that this loop connects the ND3 subunit of the membrane arm with the PSST subunit of the peripheral arm of complex I, placing it in a region that is known to be critical for the catalytic mechanism of complex I. In fact, mutations in three positions of the loop were previously reported to cause Leigh syndrome with and without dystonia or progressive mitochondrial disease.

摘要

线粒体复合体I(NADH:泛醌氧化还原酶)在30-37摄氏度孵育时会发生可逆失活。活性/失活转变可能在复合体I活性调节中起重要作用。最近有人提出,在缺氧的病理条件下或一氧化氮与氧气比例增加时,复合体I可能会被亚硝基化修饰。显然,只有在酶的失活形式下,特定的半胱氨酸才会易于发生化学修饰。通过选择性荧光标记和蛋白质组学分析,我们已将该残基鉴定为牛心线粒体线粒体编码的ND3亚基的半胱氨酸-39。半胱氨酸-39位于这个高度疏水亚基的第一和第二跨膜螺旋之间的环中。我们提出,这个环将膜臂的ND3亚基与复合体I外周臂的PSST亚基连接起来,使其处于一个已知对复合体I催化机制至关重要的区域。事实上,先前报道该环中三个位置的突变会导致伴有或不伴有肌张力障碍的 Leigh 综合征或进行性线粒体疾病。

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