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The voltage-dependent anion channel, a major component of the tRNA import machinery in plant mitochondria

机译:电压依赖性阴离子通道是植物线粒体中tRNA导入机制的主要组成部分

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in plants, as in most eukaryotic cells, import of nuclear-encoded cytosolic tRNAs is an essential process for mitochondrial biogenesis. Despite its broad occurrence, the mechanisms governing RNA transport into mitochondria are far less understood than protein import. This article demonstrates by Northwestern and gel-shift experiments that the plant mitochondrial voltage-dependent anion channel (VDAC) protein interacts with tRNA in vitro. It shows also that this porin, known to play a key role in metabolite transport, is a major component of the channel involved in the tRNA translocation step through the plant mitochondrial outer membrane, as supported by inhibition of tRNA import into isolated mitochondria by VDAC antibodies and Ruthenium red. However VDAC is not a tRNA receptor on the outer membrane. Rather, two major components from the TOM (translocase of the outer mitochondrial membrane) complex, namely TOM20 and TOM40, are important for tRNA binding at the surface of mitochondria, suggesting that they are also involved in tRNA import. Finally, we show that proteins and tRNAs are translocated into plant mitochondria by different pathways. Together, these findings identify unexpected components of the tRNA import machinery and suggest that the plant tRNA import pathway has evolved by recruiting multifunctional proteins.
机译:在植物中,就像在大多数真核细胞中一样,导入核编码的胞质tRNA是线粒体生物发生的重要过程。尽管它广泛存在,但控制RNA转运到线粒体的机制远不如蛋白质导入。本文通过西北和凝胶移位实验证明了植物线粒体电压依赖性阴离子通道(VDAC)蛋白在体外与tRNA相互作用。它还表明,这种孔蛋白在代谢物的运输中起着关键作用,是通过植物线粒体外膜通过植物中线粒体外膜的tRNA易位步骤中所涉及的通道的主要成分,这是由VDAC抗体抑制tRNA导入分离的线粒体所支持的。和钌红色。但是,VDAC不是外膜上的tRNA受体。而是,TOM(线粒体外膜转座酶)复合物的两个主要成分,即TOM20和TOM40,对于线粒体表面的tRNA结合很重要,表明它们也参与tRNA的导入。最后,我们显示蛋白质和tRNA通过不同的途径转移到植物线粒体中。在一起,这些发现确定了tRNA导入机制的意外组件,并表明植物tRNA导入途径已经通过募集多功能蛋白而进化。

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