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线粒体DNA编码蛋白ND1的缺失导致组装早期阶段复合体I生物合成的破坏。

Loss of mitochondrial DNA-encoded protein ND1 results in disruption of complex I biogenesis during early stages of assembly.

作者信息

Lim Sze Chern, Hroudová Jana, Van Bergen Nicole J, Lopez Sanchez M Isabel G, Trounce Ian A, McKenzie Matthew

机构信息

Centre for Genetic Diseases, Hudson Institute of Medical Research, Clayton, Melbourne, Victoria, Australia;

Department of Psychiatry, First Faculty of Medicine, Charles University in Prague, Prague, Czech Republic;

出版信息

FASEB J. 2016 Jun;30(6):2236-48. doi: 10.1096/fj.201500137R. Epub 2016 Feb 29.

Abstract

Mitochondrial complex I (NADH:ubiquinone oxidoreductase) must be assembled precisely from 45 protein subunits for it to function correctly. One of its mitochondrial DNA (mtDNA) encoded subunits, ND1, is incorporated during the early stages of complex I assembly. However, little is known about how mutations in ND1 affect this assembly process. We found that in human 143B cybrid cells carrying a homoplasmic MT-ND1 mutation, ND1 protein could not be translated. As a result, the early stages of complex I assembly were disrupted, with mature complex I undetectable and complex I-linked respiration severely reduced to 2.0% of control levels. Interestingly, complex IV (ferrocytochrome c:oxygen oxidoreductase) steady-state levels were also reduced to 40.3%, possibly due to its diminished stability in the absence of respiratory supercomplex formation. This was in comparison with 143B cybrid controls (that contained wild-type mtDNA on the same nuclear background), which exhibited normal complex I, complex IV, and supercomplex assembly. We conclude that the loss of ND1 stalls complex I assembly during the early stages of its biogenesis, which not only results in the loss of mature complex I but also disrupts the stability of complex IV and the respiratory supercomplex to cause mitochondrial dysfunction.-Lim, S. C., Hroudová, J., Van Bergen, N. J., Lopez Sanchez, M. I. G., Trounce, I. A., McKenzie, M. Loss of mitochondrial DNA-encoded protein ND1 results in disruption of complex I biogenesis during early stages of assembly.

摘要

线粒体复合物I(NADH:泛醌氧化还原酶)必须由45个蛋白质亚基精确组装才能正常发挥功能。其线粒体DNA(mtDNA)编码的亚基之一ND1在复合物I组装的早期阶段被整合。然而,关于ND1中的突变如何影响这一组装过程,人们知之甚少。我们发现,在携带纯质MT-ND1突变的人143B细胞杂交株中,ND1蛋白无法翻译。结果,复合物I组装的早期阶段被破坏,成熟的复合物I无法检测到,且与复合物I相关的呼吸作用严重降低至对照水平的2.0%。有趣的是,复合物IV(亚铁细胞色素c:氧氧化还原酶)的稳态水平也降至40.3%,这可能是由于在缺乏呼吸超复合物形成的情况下其稳定性降低所致。与之相比,143B细胞杂交株对照(在相同核背景上含有野生型mtDNA)表现出正常的复合物I、复合物IV和超复合物组装。我们得出结论,ND1的缺失在其生物合成的早期阶段使复合物I组装停滞,这不仅导致成熟复合物I的丧失,还破坏了复合物IV和呼吸超复合物的稳定性,从而引起线粒体功能障碍。-林,S.C.,赫劳多娃,J.,范·贝根,N.J.,洛佩斯·桑切斯,M.I.G.,特伦斯,I.A.,麦肯齐,M.线粒体DNA编码蛋白ND1的缺失导致复合物I在组装早期阶段的生物合成中断。

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