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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >In vivo contribution of Class III alcohol dehydrogenase (ADH3) to alcohol metabolism through activation by cytoplasmic solution hydrophobicity
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In vivo contribution of Class III alcohol dehydrogenase (ADH3) to alcohol metabolism through activation by cytoplasmic solution hydrophobicity

机译:III类醇脱氢酶(ADH3)在体内通过细胞质溶液疏水性激活对酒精代谢的贡献

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Alcohol metabolism in vivo cannot be explained solely by the action of the classical alcohol dehydrogenase, Class I ADH (ADH 1). Over the past three decades, attempts to identify the metabolizing enzymes responsible for the ADH I-independent pathway have focused on the microsomal ethanol oxidizing system (MEOS) and catalase, but have failed to clarify their roles in systemic alcohol metabolism. In this study, we used Adh3-null mutant mice to demonstrate that Class III ADH (ADH3), a ubiquitous enzyme of ancient origin, contributes to alcohol metabolism in vivo dose-dependently resulting in a diminution of acute alcohol intoxication. Although the ethanol oxidation activity of ADH3 in vitro is low due to its very high K-m it was found to exhibit a markedly enhanced catalytic efficiency (k(cat)/K-m) toward ethanol when the solution hydrophobicity of the reaction medium was increased with a hydrophobic substance. Confocal laser scanning microscopy with Nile red as a hydrophobic probe revealed a cytoplasmic solution of mouse liver cells to be much more hydrophobic than the buffer solution used for in vitro experiments. So, the in vivo contribution of high-K-m ADH3 to alcohol metabolism is likely to involve activation in a hydrophobic solution. Thus, the present study demonstrated that ADH3 plays an important role in systemic ethanol metabolism at higher levels of blood ethanol through activation by cytoplasmic solution hydrophobicity. (c) 2005 Elsevier B.V. All rights reserved.
机译:不能仅通过经典的酒精脱氢酶I类ADH(ADH 1)的作用来解释体内的酒精代谢。在过去的三十年中,试图确定负责ADH I非依赖性途径的代谢酶的尝试集中于微粒体乙醇氧化系统(MEOS)和过氧化氢酶,但未能阐明其在全身性酒精代谢中的作用。在这项研究中,我们使用了Adh3-null突变小鼠来证明III类ADH(ADH3)(一种古老的普遍存在的酶)以剂量依赖性方式在体内促进酒精代谢,从而减少了急性酒精中毒。尽管ADH3在体外的乙醇氧化活性由于其非常高的Km而较低,但发现当反应介质的溶液疏水性随着疏水性而增加时,对乙醇的催化效率(k(cat)/ Km)显着提高。物质。用尼罗红作为疏水探针的共聚焦激光扫描显微镜显示,小鼠肝细胞的细胞质溶液比用于体外实验的缓冲液具有更大的疏水性。因此,高K-m ADH3在体内对酒精代谢的贡献可能涉及在疏水溶液中的活化。因此,本研究表明ADH3在较高水平的血液乙醇中通过细胞质溶液疏水性的活化在全身乙醇代谢中起重要作用。 (c)2005 Elsevier B.V.保留所有权利。

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