Departamento de Microbiologia, Instituto de Ciências Biomédicas, Universidade de São Paulo, 05508-900 São Paulo, Brazil.
Biochem J. 2013 Feb 1;449(3):595-603. doi: 10.1042/BJ20121432.
Saccharomyces cerevisiae has three distinct inner mitochondrial membrane NADH dehydrogenases mediating the transfer of electrons from NADH to CoQ (coenzyme Q): Nde1p, Nde2p and Ndi1p. The active site of Ndi1p faces the matrix side, whereas the enzymatic activities of Nde1p and Nde2p are restricted to the intermembrane space side, where they are responsible for cytosolic NADH oxidation. In the present study we genetically manipulated yeast strains in order to alter the redox state of CoQ and NADH dehydrogenases to evaluate the consequences on mtDNA (mitochondrial DNA) maintenance. Interestingly, nde1 deletion was protective for mtDNA in strains defective in CoQ function. Additionally, the absence of functional Nde1p promoted a decrease in the rate of H2O2 release in isolated mitochondria from different yeast strains. On the other hand, overexpression of the predominant NADH dehydrogenase NDE1 elevated the rate of mtDNA loss and was toxic to coq10 and coq4 mutants. Increased CoQ synthesis through COQ8 overexpression also demonstrated that there is a correlation between CoQ respiratory function and mtDNA loss: supraphysiological CoQ levels were protective against mtDNA loss in the presence of oxidative imbalance generated by Nde1p excess or exogenous H2O2. Altogether, our results indicate that impairment in the oxidation of cytosolic NADH by Nde1p is deleterious towards mitochondrial biogenesis due to an increase in reactive oxygen species release.
酿酒酵母有三种不同的线粒体内膜 NADH 脱氢酶,介导电子从 NADH 向辅酶 Q(辅酶 Q)的转移:Nde1p、Nde2p 和 Ndi1p。Ndi1p 的活性位点朝向基质侧,而 Nde1p 和 Nde2p 的酶活性仅限于膜间空间侧,在那里它们负责胞质 NADH 氧化。在本研究中,我们通过遗传操作酵母菌株来改变 CoQ 和 NADH 脱氢酶的氧化还原状态,以评估其对 mtDNA(线粒体 DNA)维持的影响。有趣的是,nde1 缺失对 CoQ 功能缺陷菌株的 mtDNA 具有保护作用。此外,缺乏功能性 Nde1p 可促进不同酵母菌株分离线粒体中 H2O2 释放速率的降低。另一方面,NDE1 即主要 NADH 脱氢酶的过表达会加速 mtDNA 的丢失,并且对 coq10 和 coq4 突变体有毒。通过 COQ8 过表达增加 CoQ 合成也表明 CoQ 呼吸功能与 mtDNA 丢失之间存在相关性:在 Nde1p 过量或外源 H2O2 产生的氧化失衡存在的情况下,超生理 CoQ 水平可防止 mtDNA 丢失。总之,我们的结果表明,由于活性氧物质释放增加,Nde1p 对胞质 NADH 的氧化作用受损对线粒体生物发生有害。