On Message Ribonucleic Acids Targeting to Mitochondria

Di Ding, K. Dave, S. Bhattacharya
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引用次数: 3

Abstract

Mitochondria are subcellular organelles that provide energy for a variety of basic cellular processes in eukaryotic cells. Mitochondria maintain their own genomes and many of their endosymbiont genes are encoded by nuclear genomes. The crosstalk between the mitochondrial and nuclear genomes ensures mitochondrial biogenesis, dynamics and maintenance. Mitochondrial proteins are partly encoded by nucleus and synthesized in the cytosol and partly in the mitochondria coded by mitochondrial genome. The efficiency of transport systems that transport nuclear encoded gene products such as proteins and mRNAs to the mitochondrial vicinity to allow for their translation and/or import are recently receiving wide attention. There is currently no concrete evidence that nuclear encoded mRNA is transported into the mitochondria, however, they can be transported onto the mitochondrial surface and translated at the surface of mitochondria utilizing cytosolic machinery. In this review we present an overview of the recent advances in the mRNA transport, with emphasis on the transport of nuclear-encoded mitochondrial protein mRNA into the mitochondria.
靶向线粒体的信息核糖核酸
线粒体是一种亚细胞器,为真核细胞的各种基本细胞过程提供能量。线粒体维持其自身的基因组,其许多内共生基因是由核基因组编码的。线粒体和核基因组之间的串扰保证了线粒体的生物发生、动力学和维持。线粒体蛋白部分由细胞核编码,在细胞质中合成,部分由线粒体基因组编码,在线粒体中合成。转运系统将核编码基因产物(如蛋白质和mrna)转运到线粒体附近以允许其翻译和/或输入的效率最近受到广泛关注。目前还没有具体的证据表明核编码的mRNA被转运到线粒体中,但是它们可以被转运到线粒体表面,并利用细胞质机制在线粒体表面进行翻译。在这篇综述中,我们概述了mRNA转运的最新进展,重点是核编码线粒体蛋白mRNA转运到线粒体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biochemistry Insights
Biochemistry Insights BIOCHEMISTRY & MOLECULAR BIOLOGY-
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