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人类电压依赖性阴离子通道异构体的表征:VDAC3具有独特功能?

Characterization of human VDAC isoforms: a peculiar function for VDAC3?

作者信息

De Pinto Vito, Guarino Francesca, Guarnera Andrea, Messina Angela, Reina Simona, Tomasello Flora M, Palermo Vanessa, Mazzoni Cristina

机构信息

Department of Chemical Sciences, University of Catania, viale A. Doria 6, 95125 Catania, Italy.

出版信息

Biochim Biophys Acta. 2010 Jun-Jul;1797(6-7):1268-75. doi: 10.1016/j.bbabio.2010.01.031. Epub 2010 Feb 6.

Abstract

VDACs are a family of pore-forming proteins mainly located in the mitochondrial outer membrane. In mammals three isoforms exist. In this work we review the information available about them with the addition of new results. We have compared the human VDACs transformed in a yeast strain lacking the endogenous porin. VDAC1 and 2 are able to complement the lack of porin in mitochondrial respiration and modulation of ROS. VDAC3 has a limited ability to support the mitochondrial respiration and has no influence in the control of ROS production. The over-expression of VDAC isoforms in wild type yeast strain led to a dramatic sensitivity to oxidative stress, especially for VDAC3, and a shorter lifespan in respiratory conditions. Real-time PCR comparison of the isoforms indicated that in HeLa cells VDAC1 is 10 times more abundant than VDAC2 and 100 times than VDAC3. The over-expression of any single isoform caused a 10 times increase of the transcripts of VDAC2 and VDAC3, while VDAC1 is not changed by the over-expression of the other isoforms. Models of VDAC2 and VDAC3 isoform structure showed that they could be made of a 19-strand beta-barrel and an N-terminal sequence with variable features. In this work we show for the first time a functional characterization of VDAC3 in a cellular context.

摘要

电压依赖性阴离子通道(VDACs)是一类主要位于线粒体外膜的成孔蛋白家族。在哺乳动物中存在三种亚型。在这项工作中,我们在增添新结果的同时回顾了关于它们的现有信息。我们比较了在缺乏内源性孔蛋白的酵母菌株中转化的人类VDACs。VDAC1和VDAC2能够弥补线粒体呼吸中孔蛋白的缺失以及对活性氧(ROS)的调节。VDAC3支持线粒体呼吸的能力有限,并且对ROS产生的控制没有影响。在野生型酵母菌株中过表达VDAC亚型会导致对氧化应激的显著敏感性,尤其是对于VDAC3,并且在呼吸条件下寿命缩短。对这些亚型的实时PCR比较表明,在HeLa细胞中,VDAC1的丰度比VDAC2高10倍,比VDAC3高100倍。任何单一亚型的过表达都会导致VDAC2和VDAC3的转录本增加10倍,而VDAC1不会因其他亚型的过表达而改变。VDAC2和VDAC3亚型的结构模型表明,它们可能由一个19股β桶和一个具有可变特征的N端序列组成。在这项工作中,我们首次展示了VDAC3在细胞环境中的功能特性。

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