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线粒体蛋白质合成受损的人类疾病。

Human diseases with impaired mitochondrial protein synthesis.

作者信息

Rötig Agnès

机构信息

Université Paris Descartes and INSERM U781, 149 rue de Sèvres, Hôpital Necker-Enfants Malades, 75015 Paris, France.

出版信息

Biochim Biophys Acta. 2011 Sep;1807(9):1198-205. doi: 10.1016/j.bbabio.2011.06.010. Epub 2011 Jun 25.

DOI:10.1016/j.bbabio.2011.06.010
PMID:21708121
Abstract

Mitochondrial respiratory chain deficiencies represent one of the major causes of metabolic disorders that are related to genetic defects in mitochondrial or nuclear DNA. The mitochondrial protein synthesis allows the synthesis of the 13 respiratory chain subunits encoded by mtDNA. Altogether, about 100 different proteins are involved in the translation of the 13 proteins encoded by the mitochondrial genome emphasizing the considerable investment required to maintain mitochondrial genetic system. Mitochondrial protein synthesis deficiency can be caused by mutations in any component of the translation apparatus including tRNA, rRNA and proteins. Mutations in mitochondrial rRNA and tRNAs have been first identified in various forms of mitochondrial disorders. Moreover abnormal translation due to mutation in nuclear genes encoding tRNA-modifying enzymes, ribosomal proteins, aminoacyl-tRNA synthetases, elongation and termination factors and translational activators have been successively described. These deficiencies are characterized by a huge clinical and genetic heterogeneity hampering to establish genotype-phenotype correlations and an easy diagnosis. One can hypothesize that a new technique for gene identification, such as exome sequencing will rapidly allow to expand the list of genes involved in abnormal mitochondrial protein synthesis.

摘要

线粒体呼吸链缺陷是与线粒体或核DNA基因缺陷相关的代谢紊乱的主要原因之一。线粒体蛋白质合成能够合成由线粒体DNA编码的13个呼吸链亚基。总共约有100种不同的蛋白质参与线粒体基因组编码的13种蛋白质的翻译,这凸显了维持线粒体遗传系统所需的巨大投入。线粒体蛋白质合成缺陷可能由翻译装置的任何组成部分发生突变引起,包括转运RNA(tRNA)、核糖体RNA(rRNA)和蛋白质。线粒体rRNA和tRNA的突变最初是在各种形式的线粒体疾病中发现的。此外,相继报道了由于编码tRNA修饰酶、核糖体蛋白、氨酰tRNA合成酶、延伸和终止因子以及翻译激活因子的核基因突变导致的异常翻译。这些缺陷的特点是临床和遗传异质性极大,阻碍了建立基因型与表型的相关性以及进行准确诊断。可以推测,一种新的基因鉴定技术,如外显子组测序,将迅速扩充参与异常线粒体蛋白质合成的基因列表。

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