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首页> 外文期刊>Alcoholism: Clinical and experimental research >A Mutation in Mitochondrial Complex I Increases Ethanol Sensitivity in Caenorhabditis elegans.
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A Mutation in Mitochondrial Complex I Increases Ethanol Sensitivity in Caenorhabditis elegans.

机译:线粒体复合体I的突变会增加秀丽隐杆线虫的乙醇敏感性。

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摘要

BACKGROUNDThe gene gas-1 encodes the 49-kDa subunit of complex I of the mitochondrial electron transport chain in Caenorhabditis elegans. A mutation in gas-1 profoundly increases sensitivity to ethanol and decreases complex I-dependent metabolism in mitochondria.METHODSMitochondria were isolated from wild-type and gas-1 strains of C. elegans. The effects of ethanol on complex I-, II-, and III-dependent oxidative phosphorylation were measured for mitochondria from each strain. Reversibility of the effects of ethanol was determined by measuring oxidative phosphorylation after removal of mitochondria from 1.5 M ethanol. The effects of ethanol on mitochondrial structure were visualized with electron microscopy.RESULTSWe found that ethanol inhibited complex I-, II-, and III-dependent oxidative phosphorylation in isolated wild-type mitochondria at concentrations that immobilize intact worms. It is important to note that the inhibitory effects of ethanol on mitochondria from either C. elegans or rat skeletal muscle were reversible even at molar concentrations. Complex I activity was lower in mitochondria from gas-1 animals than in mitochondria from wild-type animals at equal ethanol concentrations. Complex II activity was higher in gas-1 than in wild-type mitochondria at all concentrations of ethanol. No difference was seen between the strains in the sensitivity of complex III to ethanol.CONCLUSIONSThe difference in ethanol sensitivities between gas-1 and wild-type nematodes results solely from altered complex I function. At the respective concentrations of ethanol that immobilize whole animals, mitochondria from each strain of worms displayed identical rates of complex I-dependent state 3 respiration. We conclude that a threshold value of complex I activity controls the transition from mobility to immobility of C. elegans.
机译:背景技术gas-1基因编码秀丽隐杆线虫线粒体电子传输链的复合物I的49 kDa亚基。 gas-1突变显着提高了对乙醇的敏感性,并降低了线粒体中I依赖的复杂代谢。METHODS线粒体是从秀丽隐杆线虫的野生型和gas-1菌株中分离得到的。测量了乙醇对每种菌株线粒体的复杂I-,II-和III-依赖性氧化磷酸化的影响。乙醇作用的可逆性是通过测量从1.5 M乙醇中除去线粒体后的氧化磷酸化来确定的。结果发现,在固定完整蠕虫的浓度下,乙醇抑制了分离的野生型线粒体中复杂的I-,II-和III依赖的氧化磷酸化,从而抑制了乙醇对线粒体结构的影响。重要的是要注意,乙醇对线虫或大鼠骨骼肌线粒体的抑制作用是可逆的,即使在摩尔浓度下也是如此。在相同乙醇浓度下,gas-1动物的线粒体中复合物I活性低于野生型动物的线粒体中。在所有乙醇浓度下,gas-1中的复合物II活性均高于野生型线粒体。菌株之间对复合物III的乙醇敏感性没有差异。结论Gas-1和野生型线虫对乙醇的敏感性差异仅是由于复合物I功能的改变。在固定整个动物的乙醇浓度下,每种蠕虫菌株的线粒体均表现出相同的复杂的I型依赖状态3呼吸速率。我们得出的结论是,复杂的I活性的阈值控制着秀丽隐杆线虫从迁移到不迁移的过渡。

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