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线粒体 tRNA 修饰酶 MTO1 的突变导致肥厚型心肌病和乳酸性酸中毒。

Mutations of the mitochondrial-tRNA modifier MTO1 cause hypertrophic cardiomyopathy and lactic acidosis.

机构信息

Unit of Molecular Neurogenetics, Fondazione IRCCS, Milan, Italy.

出版信息

Am J Hum Genet. 2012 Jun 8;90(6):1079-87. doi: 10.1016/j.ajhg.2012.04.011. Epub 2012 May 17.

Abstract

Dysfunction of mitochondrial respiration is an increasingly recognized cause of isolated hypertrophic cardiomyopathy. To gain insight into the genetic origin of this condition, we used next-generation exome sequencing to identify mutations in MTO1, which encodes mitochondrial translation optimization 1. Two affected siblings carried a maternal c.1858dup (p.Arg620Lysfs(∗)8) frameshift and a paternal c.1282G>A (p.Ala428Thr) missense mutation. A third unrelated individual was homozygous for the latter change. In both humans and yeast, MTO1 increases the accuracy and efficiency of mtDNA translation by catalyzing the 5-carboxymethylaminomethylation of the wobble uridine base in three mitochondrial tRNAs (mt-tRNAs). Accordingly, mutant muscle and fibroblasts showed variably combined reduction in mtDNA-dependent respiratory chain activities. Reduced respiration in mutant cells was corrected by expressing a wild-type MTO1 cDNA. Conversely, defective respiration of a yeast mto1Δ strain failed to be corrected by an Mto1(Pro622∗) variant, equivalent to human MTO1(Arg620Lysfs∗8), whereas incomplete correction was achieved by an Mto1(Ala431Thr) variant, corresponding to human MTO1(Ala428Thr). The respiratory yeast phenotype was dramatically worsened in stress conditions and in the presence of a paromomycin-resistant (P(R)) mitochondrial rRNA mutation. Lastly, in vivo mtDNA translation was impaired in the mutant yeast strains.

摘要

线粒体呼吸功能障碍是孤立性肥厚型心肌病的一个日益被认识的原因。为了深入了解这种情况的遗传起源,我们使用下一代外显子组测序来鉴定编码线粒体翻译优化 1(MTO1)的基因突变。两个受影响的兄弟姐妹携带了一个母系 c.1858dup(p.Arg620Lysfs(∗)8)移码突变和一个父系 c.1282G>A(p.Ala428Thr)错义突变。第三个无关个体是后者变化的纯合子。在人类和酵母中,MTO1 通过催化三个线粒体 tRNA(mt-tRNA)中摆动尿嘧啶碱基的 5-羧甲基氨基甲酰甲基化,提高 mtDNA 翻译的准确性和效率。因此,突变肌肉和成纤维细胞表现出 mtDNA 依赖性呼吸链活性的不同程度联合降低。突变细胞的呼吸作用通过表达野生型 MTO1 cDNA 得到纠正。相反,酵母 mto1Δ 菌株的呼吸缺陷不能通过与人类 MTO1(Arg620Lysfs∗8)等效的 Mto1(Pro622∗)变体纠正,而与人类 MTO1(Ala428Thr)等效的 Mto1(Ala431Thr)变体仅能部分纠正。在应激条件下和存在对帕罗霉素有抗性(P(R))的线粒体 rRNA 突变时,呼吸酵母表型显著恶化。最后,在突变酵母菌株中,体内 mtDNA 翻译受损。

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