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线粒体核糖体蛋白 MRPS22 突变导致类 Cornelia de Lange 表型、脑异常和肥厚型心肌病。

Mutation in mitochondrial ribosomal protein MRPS22 leads to Cornelia de Lange-like phenotype, brain abnormalities and hypertrophic cardiomyopathy.

机构信息

Department of Pediatrics, Nijmegen Center for Mitochondrial Disorders, Radboud University Nijmegen Medical Center, Nijmegen, The Netherlands.

出版信息

Eur J Hum Genet. 2011 Apr;19(4):394-9. doi: 10.1038/ejhg.2010.214. Epub 2010 Dec 29.

Abstract

The oxidative phosphorylation (OXPHOS) system is under control of both the mitochondrial and the nuclear genomes; 13 subunits are synthesized by the mitochondrial translation machinery. We report a patient with Cornelia de Lange-like dysmorphic features, brain abnormalities and hypertrophic cardiomyopathy, and studied the genetic defect responsible for the combined OXPHOS complex I, III and IV deficiency observed in fibroblasts. The combination of deficiencies suggested a primary defect associated with the synthesis of mitochondrially encoded OXPHOS subunits. Analysis of mitochondrial protein synthesis revealed a marked impairment in mitochondrial translation. Homozygosity mapping and sequence analysis of candidate genes revealed a homozygous mutation in MRPS22, a gene encoding a mitochondrial ribosomal small subunit protein. The mutation predicts a Leu215Pro substitution at an evolutionary conserved site. Mutations in genes implicated in Cornelia de Lange syndrome or copy number variations were not found. Transfection of patient fibroblasts, in which MRPS22 was undetectable, with the wild-type MRPS22 cDNA restored the amount and activity of OXPHOS complex IV, as well as the 12S rRNA transcript level to normal values. These findings demonstrate the pathogenicity of the MRPS22 mutation and stress the significance of mutations in nuclear genes, including genes that have no counterparts in lower species like bacteria and yeast, for mitochondrial translation defects.

摘要

氧化磷酸化(OXPHOS)系统受到线粒体和核基因组的双重控制;其中 13 个亚基由线粒体翻译机制合成。我们报告了一位具有 Cornelia de Lange 样畸形特征、脑异常和肥厚型心肌病的患者,并研究了导致在成纤维细胞中观察到的 OXPHOS 复合物 I、III 和 IV 联合缺陷的遗传缺陷。这些缺陷的组合提示与线粒体编码的 OXPHOS 亚基合成有关的原发性缺陷。线粒体蛋白合成分析显示线粒体翻译明显受损。同源性作图和候选基因的序列分析显示,MRPS22 基因(编码线粒体核糖体小亚基蛋白的基因)纯合突变。该突变预测在进化保守位点处发生 Leu215Pro 取代。未发现与 Cornelia de Lange 综合征相关的基因突变或拷贝数变异。转染患者成纤维细胞中,MRPS22 无法检测到,野生型 MRPS22 cDNA 的转染恢复了 OXPHOS 复合物 IV 的数量和活性,以及 12S rRNA 转录物水平恢复到正常水平。这些发现证明了 MRPS22 突变的致病性,并强调了核基因(包括在细菌和酵母等较低物种中没有对应物的基因)突变对于线粒体翻译缺陷的重要性。

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