Literature DB >> 32723871

Complex I mutations synergize to worsen the phenotypic expression of Leber's hereditary optic neuropathy.

Yanchun Ji1,2,3, Juanjuan Zhang4, Yuanyuan Lu3,4, Qiuzi Yi3, Mengquan Chen5, Shipeng Xie6, Xiaoting Mao3, Yun Xiao3, Feilong Meng1,2,3, Minglian Zhang6, Rulai Yang7, Min-Xin Guan8,3,9,10.   

Abstract

Leber's hereditary optic neuropathy (LHON) is a maternal inheritance of eye disease because of the mitochondrial DNA (mtDNA) mutations. We previously discovered a 3866T>C mutation within the gene for the ND1 subunit of complex I as possibly amplifying disease progression for patients bearing the disease-causing 11778G>A mutation within the gene for the ND4 subunit of complex I. However, whether and how the ND1 mutation exacerbates the ND4 mutation were unknown. In this report, we showed that four Chinese families bearing both m.3866T>C and m.11778G>A mutations exhibited higher penetrances of LHON than 6 Chinese pedigrees carrying only the m.3866T>C mutation or families harboring only the m.11778G>A mutation. The protein structure analysis revealed that the m.3866T>C (I187T) and m.11778G>A (R340H) mutations destabilized the specific interactions with other residues of ND1 and ND4, thereby altering the structure and function of complex I. Cellular data obtained using cybrids, constructed by transferring mitochondria from the Chinese families into mtDNA-less (ρ°) cells, demonstrated that the mutations perturbed the stability, assembly, and activity of complex I, leading to changes in mitochondrial ATP levels and membrane potential and increasing the production of reactive oxygen species. These mitochondrial dysfunctions promoted the apoptotic sensitivity of cells and decreased mitophagy. Cybrids bearing only the m.3866T>C mutation displayed mild mitochondrial dysfunctions, whereas those harboring both m.3866T>C and m.11778G>A mutations exhibited greater mitochondrial dysfunctions. These suggested that the m.3866T>C mutation acted in synergy with the m.11778G>A mutation, aggravating mitochondrial dysfunctions and contributing to higher penetrance of LHON in these families carrying both mtDNA mutations.
© 2020 Ji et al.

Entities:  

Keywords:  Leber's hereditary optic neuropathy; NADH:ubiquinone oxidoreductase; apoptosis; human genetics; mitochondrial DNA; mitochondrial disease; mitochondrial respiratory chain complex; mitophagy; modifier; molecular modeling; mutation; organelle; oxygen radicals; pathogenesis; pathophysiology; penetrance; ubiquinone oxidoreductase; vision

Year:  2020        PMID: 32723871      PMCID: PMC7504918          DOI: 10.1074/jbc.RA120.014603

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  80 in total

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