首页> 外文期刊>Human Molecular Genetics >The exome sequencing identified the mutation in YARS2 encoding the mitochondrial tyrosyl-tRNA synthetase as a nuclear modifier for the phenotypic manifestation of Leber's hereditary optic neuropathy-associated mitochondrial DNA mutation
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The exome sequencing identified the mutation in YARS2 encoding the mitochondrial tyrosyl-tRNA synthetase as a nuclear modifier for the phenotypic manifestation of Leber's hereditary optic neuropathy-associated mitochondrial DNA mutation

机译:外显子组测序确定了编码线粒体酪氨酰-tRNA合成酶的YARS2中的突变是核反应修饰因子,用于Leber遗传性视神经病相关的线粒体DNA突变的表型表现

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摘要

Leber's hereditary optic neuropathy (LHON) is the most common mitochondrial disorder. Nuclear modifier genes are proposed to modify the phenotypic expression of LHON-associated mitochondrial DNA (mtDNA) mutations. By using an exome sequencing approach, we identified a LHON susceptibility allele (c.572G>T, p.191Gly>Val) in YARS2 gene encoding mitochondrial tyrosyl-tRNA synthetase, which interacts with m.11778G>A mutation to cause visual failure. We performed functional assays by using lymphoblastoid cell lines derived from members of Chinese families (asymptomatic individuals carrying m.11778G>A mutation, or both m.11778G>A and heterozygous p.191Gly>Val mutations and symptomatic subjects harboring m.11778G>A and homozygous p.191Gly>Val mutations) and controls lacking these mutations. The 191Gly>Val mutation reduced the YARS2 protein level in the mutant cells. The aminoacylated efficiency and steady-state level of tRNA(Tyr) were markedly decreased in the cell lines derived from patients both carrying homozygous YARS2 p.191Gly>Val and m.11778G>A mutations. The failure in tRNATyr metabolism impaired mitochondrial translation, especially for polypeptides with high content of tyrosine codon such as ND4, ND5, ND6 andCOX2 in cells lines carrying homozygous YARS2 p.191Gly>Val and m.11778G>A mutations. The YARS2 p.191Gly>Val mutation worsened the respiratory phenotypes associated with m.11778G>A mutation, especially reducing activities of complexes I and IV. The respiratory deficiency altered the efficiency of mitochondrial ATP synthesis and increased the production of reactive oxygen species. Thus, mutated YARS2 aggravates mitochondrial dysfunctions associated with the m.11778G>A mutation, exceeding the threshold for the expression of blindness phenotype. Our findings provided new insights into the pathophysiology of LHON that were manifested by interaction between mtDNA mutation and mutated nuclear-modifier YARS2.
机译:莱伯的遗传性视神经病变(LHON)是最常见的线粒体疾病。提出了核修饰基因以修饰LHON相关线粒体DNA(mtDNA)突变的表型表达。通过使用外显子组测序方法,我们在编码线粒体酪氨酰-tRNA合成酶的YARS2基因中鉴定了LHON易感性等位基因(c.572G> T,p.191Gly> Val),该基因与m.11778G> A突变相互作用导致视觉衰竭。我们通过使用来自中国家庭成员的有淋巴母细胞样细胞系(无症状的个体携带m.11778G> A突变,或同时携带m.11778G> A和杂合的p.191Gly> Val突变以及携带m.11778G> A的有症状受试者来进行功能分析)和纯合p.191Gly> Val突变)和缺少这些突变的对照。 191Gly> Val突变降低了突变细胞中的YARS2蛋白水平。在携带纯合YARS2 p.191Gly> Val和m.11778G> A突变的患者的细胞系中,tRNA(Tyr)的氨酰化效率和稳态水平显着降低。 tRNATyr代谢失败会破坏线粒体翻译,尤其是对于携带纯合YARS2 p.191Gly> Val和m.11778G> A突变的细胞系中酪氨酸密码子含量较高的多肽,例如ND4,ND5,ND6和COX2。 YARS2 p.191Gly> Val突变加重了与m.11778G> A突变相关的呼吸表型,尤其是降低了复合物I和IV的活性。呼吸不足改变了线粒体ATP的合成效率,并增加了活性氧的产生。因此,突变的YARS2加剧了与m.11778G> A突变相关的线粒体功能障碍,超过了失明表型的表达阈值。我们的发现为mtDNA突变与突变核修饰子YARS2之间的相互作用提供了LHON病理生理学的新见解。

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