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PMID: 23313956 已发表 · ppublish 英语

Loss-of-function mutations in MGME1 impair mtDNA replication and cause multisystemic mitochondrial disease.

Nature genetics ·第 45 卷 ·第 2 期 ·2013-03-26

Kornblum Cornelia, Nicholls Thomas J, Haack Tobias B, Schöler Susanne, Peeva Viktoriya, Danhauser Katharina, Hallmann Kerstin, Zsurka Gábor, Rorbach Joanna, Iuso Arcangela, Wieland Thomas, Sciacco Monica, Ronchi Dario, Comi Giacomo P, Moggio Maurizio, Quinzii Catarina M, DiMauro Salvatore, Calvo Sarah E, Mootha Vamsi K, Klopstock Thomas, Strom Tim M, Meitinger Thomas, Minczuk Michal, Kunz Wolfram S, Prokisch Holger

摘要

Known disease mechanisms in mitochondrial DNA (mtDNA) maintenance disorders alter either the mitochondrial replication machinery (POLG, POLG2 and C10orf2) or the biosynthesis pathways of deoxyribonucleoside 5'-triphosphates for mtDNA synthesis. However, in many of these disorders, the underlying genetic defect has yet to be discovered. Here, we identify homozygous nonsense and missense mutations in the orphan gene C20orf72 in three families with a mitochondrial syndrome characterized by external ophthalmoplegia, emaciation and respiratory failure. Muscle biopsies showed mtDNA depletion and multiple mtDNA deletions. C20orf72, hereafter MGME1 (mitochondrial genome maintenance exonuclease 1), encodes a mitochondrial RecB-type exonuclease belonging to the PD-(D/E)XK nuclease superfamily. We show that MGME1 cleaves single-stranded DNA and processes DNA flap substrates. Fibroblasts from affected individuals do not repopulate after chemically induced mtDNA depletion. They also accumulate intermediates of stalled replication and show increased levels of 7S DNA, as do MGME1-depleted cells. Thus, we show that MGME1-mediated mtDNA processing is essential for mitochondrial genome maintenance.

文献信息
期刊
Nature genetics
期刊简称
Nat Genet
发表日期
2013-03-26
收录日期
2013-01-29
更新日期
2016-11-22
语言
英语
国家/地区
United States
NLM ID
9216904
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