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核MRP基因与线粒体疾病。

Nuclear MRP genes and mitochondrial disease.

作者信息

O'Brien Thomas W, O'Brien Bonnie J, Norman Ryan A

机构信息

Department of Biochemistry and Molecular Biology, Health Science Center, University of Florida, Gainesville, FL 32610-0245, USA.

出版信息

Gene. 2005 Jul 18;354:147-51. doi: 10.1016/j.gene.2005.03.026.

Abstract

The ancestral mitochondrial ribosome (70S) underwent major structural remodeling during the evolution of mammalian mitochondrial ribosomes (55S). Despite the loss of nearly half their RNA, 55S ribosomes are actually larger than bacterial ribosomes because of all the extra proteins they contain. Typical of mammalian mitochondrial ribosomes, the human mitochondrial ribosome is one of the most protein-rich ribosomes, containing several new proteins. One of the new proteins is a novel GTP binding protein, DAP3, that has been implicated in apoptosis. Except for DAP3, the locations of the individual new proteins in the ribosome are unknown. All of the MRPs are encoded by nuclear genes. Mutations or deficiencies of ribosome assembly proteins or other essential proteins are candidates for mitochondrial disease, since the mitochondrial ribosome translates mRNAs for the 13 essential components of the oxidative phosphorylation system. Several of the MRP genes map to loci associated with disorders consistent with impaired oxidative phosphorylation, such as Leigh Syndrome, multiple mitochondrial dysfunctions, and non-syndromic hearing loss. This manuscript reviews the distinctive properties of human mitochondrial ribosomes and ribosomal proteins, and the correlation of MRP3 gene locations with loci associated with disorders of energy metabolism, and provides localization information for one of the unusual proteins contained in human mitochondrial ribosomes, MRPS29.

摘要

在哺乳动物线粒体核糖体(55S)的进化过程中,其祖先线粒体核糖体(70S)经历了重大的结构重塑。尽管55S核糖体的RNA含量几乎减少了一半,但由于其所含的所有额外蛋白质,实际上比细菌核糖体更大。人类线粒体核糖体是哺乳动物线粒体核糖体的典型代表,是蛋白质含量最丰富的核糖体之一,含有几种新蛋白质。其中一种新蛋白质是一种新型GTP结合蛋白DAP3,它与细胞凋亡有关。除了DAP3,单个新蛋白质在核糖体中的位置尚不清楚。所有线粒体核糖体蛋白均由核基因编码。核糖体装配蛋白或其他必需蛋白的突变或缺陷是线粒体疾病的候选因素,因为线粒体核糖体可翻译氧化磷酸化系统13种必需成分的mRNA。一些线粒体核糖体蛋白基因定位于与氧化磷酸化受损相关疾病的位点,如 Leigh 综合征、多种线粒体功能障碍和非综合征性听力损失。本文综述了人类线粒体核糖体和核糖体蛋白的独特特性,以及线粒体核糖体蛋白3基因位置与能量代谢紊乱相关位点的相关性,并提供了人类线粒体核糖体中所含一种特殊蛋白质——线粒体核糖体小亚基蛋白29的定位信息。

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