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LRPPRC基因突变在法裔加拿大人群体之外会引发早发性多系统线粒体疾病。

LRPPRC mutations cause early-onset multisystem mitochondrial disease outside of the French-Canadian population.

作者信息

Oláhová Monika, Hardy Steven A, Hall Julie, Yarham John W, Haack Tobias B, Wilson William C, Alston Charlotte L, He Langping, Aznauryan Erik, Brown Ruth M, Brown Garry K, Morris Andrew A M, Mundy Helen, Broomfield Alex, Barbosa Ines A, Simpson Michael A, Deshpande Charu, Moeslinger Dorothea, Koch Johannes, Stettner Georg M, Bonnen Penelope E, Prokisch Holger, Lightowlers Robert N, McFarland Robert, Chrzanowska-Lightowlers Zofia M A, Taylor Robert W

机构信息

1 Wellcome Trust Centre for Mitochondrial Research, Newcastle University, Newcastle upon Tyne, NE2 4HH, UK.

2 Department of Neuroradiology, Royal Victoria Infirmary, Newcastle upon Tyne, NE1 3BZ, UK.

出版信息

Brain. 2015 Dec;138(Pt 12):3503-19. doi: 10.1093/brain/awv291. Epub 2015 Oct 27.

Abstract

Mitochondrial Complex IV [cytochrome c oxidase (COX)] deficiency is one of the most common respiratory chain defects in humans. The clinical phenotypes associated with COX deficiency include liver disease, cardiomyopathy and Leigh syndrome, a neurodegenerative disorder characterized by bilateral high signal lesions in the brainstem and basal ganglia. COX deficiency can result from mutations affecting many different mitochondrial proteins. The French-Canadian variant of COX-deficient Leigh syndrome is unique to the Saguenay-Lac-Saint-Jean region of Québec and is caused by a founder mutation in the LRPPRC gene. This encodes the leucine-rich pentatricopeptide repeat domain protein (LRPPRC), which is involved in post-transcriptional regulation of mitochondrial gene expression. Here, we present the clinical and molecular characterization of novel, recessive LRPPRC gene mutations, identified using whole exome and candidate gene sequencing. The 10 patients come from seven unrelated families of UK-Caucasian, UK-Pakistani, UK-Indian, Turkish and Iraqi origin. They resemble the French-Canadian Leigh syndrome patients in having intermittent severe lactic acidosis and early-onset neurodevelopmental problems with episodes of deterioration. In addition, many of our patients have had neonatal cardiomyopathy or congenital malformations, most commonly affecting the heart and the brain. All patients who were tested had isolated COX deficiency in skeletal muscle. Functional characterization of patients' fibroblasts and skeletal muscle homogenates showed decreased levels of mutant LRPPRC protein and impaired Complex IV enzyme activity, associated with abnormal COX assembly and reduced steady-state levels of numerous oxidative phosphorylation subunits. We also identified a Complex I assembly defect in skeletal muscle, indicating different roles for LRPPRC in post-transcriptional regulation of mitochondrial mRNAs between tissues. Patient fibroblasts showed decreased steady-state levels of mitochondrial mRNAs, although the length of poly(A) tails of mitochondrial transcripts were unaffected. Our study identifies LRPPRC as an important disease-causing gene in an early-onset, multisystem and neurological mitochondrial disease, which should be considered as a cause of COX deficiency even in patients originating outside of the French-Canadian population.

摘要

线粒体复合物IV [细胞色素c氧化酶(COX)] 缺乏症是人类最常见的呼吸链缺陷之一。与COX缺乏症相关的临床表型包括肝病、心肌病和Leigh综合征,后者是一种神经退行性疾病,其特征为脑干和基底神经节出现双侧高信号病变。COX缺乏症可能由影响许多不同线粒体蛋白的突变引起。COX缺乏型Leigh综合征的法裔加拿大人变体是魁北克萨格奈-圣让湖区所特有的,由LRPPRC基因中的一个奠基者突变所致。该基因编码富含亮氨酸的五肽重复结构域蛋白(LRPPRC),它参与线粒体基因表达的转录后调控。在此,我们展示了使用全外显子组测序和候选基因测序鉴定出的新型隐性LRPPRC基因突变的临床和分子特征。这10名患者来自7个不相关的家庭,分别具有英国白种人、英国巴基斯坦人、英国印度人、土耳其人和伊拉克人的血统。他们与法裔加拿大人Leigh综合征患者相似,表现为间歇性严重乳酸酸中毒以及伴有病情恶化发作的早发性神经发育问题。此外,我们的许多患者患有新生儿心肌病或先天性畸形,最常见的是影响心脏和大脑。所有接受检测的患者骨骼肌中均存在孤立的COX缺乏。对患者成纤维细胞和骨骼肌匀浆的功能特征分析显示,突变型LRPPRC蛋白水平降低,复合物IV酶活性受损,这与COX组装异常以及众多氧化磷酸化亚基的稳态水平降低有关。我们还在骨骼肌中发现了复合物I组装缺陷,表明LRPPRC在不同组织的线粒体mRNA转录后调控中具有不同作用。患者成纤维细胞中线粒体mRNA的稳态水平降低,尽管线粒体转录本的多聚腺苷酸尾长度未受影响。我们的研究确定LRPPRC是一种早发性、多系统和神经线粒体疾病中的重要致病基因,即使在非法裔加拿大人群的患者中,也应将其视为COX缺乏症的一个病因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cf8/4655343/4526e6997259/awv291fig1g.jpg

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