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人类线粒体DNA耗竭综合征基因MPV17编码一种调节膜电位的非选择性通道。

The Human Mitochondrial DNA Depletion Syndrome Gene MPV17 Encodes a Non-selective Channel That Modulates Membrane Potential.

作者信息

Antonenkov Vasily D, Isomursu Antti, Mennerich Daniela, Vapola Miia H, Weiher Hans, Kietzmann Thomas, Hiltunen J Kalervo

机构信息

From the Faculty of Biochemistry and Molecular Medicine, Biocenter Oulu, University of Oulu, P.O. Box 3000, FI-90014 Oulu, Finland and

From the Faculty of Biochemistry and Molecular Medicine, Biocenter Oulu, University of Oulu, P.O. Box 3000, FI-90014 Oulu, Finland and.

出版信息

J Biol Chem. 2015 May 29;290(22):13840-61. doi: 10.1074/jbc.M114.608083. Epub 2015 Apr 10.

Abstract

The human MPV17-related mitochondrial DNA depletion syndrome is an inherited autosomal recessive disease caused by mutations in the inner mitochondrial membrane protein MPV17. Although more than 30 MPV17 gene mutations were shown to be associated with mitochondrial DNA depletion syndrome, the function of MPV17 is still unknown. Mice deficient in Mpv17 show signs of premature aging. In the present study, we used electrophysiological measurements with recombinant MPV17 to reveal that this protein forms a non-selective channel with a pore diameter of 1.8 nm and located the channel's selectivity filter. The channel was weakly cation-selective and showed several subconductance states. Voltage-dependent gating of the channel was regulated by redox conditions and pH and was affected also in mutants mimicking a phosphorylated state. Likewise, the mitochondrial membrane potential (Δψm) and the cellular production of reactive oxygen species were higher in embryonic fibroblasts from Mpv17(-/-) mice. However, despite the elevated Δψm, the Mpv17-deficient mitochondria showed signs of accelerated fission. Together, these observations uncover the role of MPV17 as a Δψm-modulating channel that apparently contributes to mitochondrial homeostasis under different conditions.

摘要

人类MPV17相关的线粒体DNA耗竭综合征是一种由线粒体内膜蛋白MPV17突变引起的常染色体隐性遗传病。尽管已发现30多种MPV17基因突变与线粒体DNA耗竭综合征相关,但MPV17的功能仍不清楚。缺乏Mpv17的小鼠表现出早衰迹象。在本研究中,我们使用重组MPV17进行电生理测量,以揭示该蛋白形成了一个孔径为1.8nm的非选择性通道,并确定了该通道的选择性过滤器。该通道具有弱阳离子选择性,并表现出几种亚电导状态。通道的电压依赖性门控受氧化还原条件和pH调节,在模拟磷酸化状态的突变体中也受到影响。同样,Mpv17(-/-)小鼠胚胎成纤维细胞中的线粒体膜电位(Δψm)和活性氧的细胞产生量更高。然而,尽管Δψm升高,但缺乏Mpv17的线粒体显示出加速分裂的迹象。总之,这些观察结果揭示了MPV17作为一种调节Δψm的通道的作用,该通道显然在不同条件下有助于线粒体的稳态。

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