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弓形虫II型烟酰胺腺嘌呤二核苷酸脱氢酶TgNDH2-I受1-羟基-2-烷基-4(1H)喹诺酮类抑制。

The Toxoplasma gondii type-II NADH dehydrogenase TgNDH2-I is inhibited by 1-hydroxy-2-alkyl-4(1H)quinolones.

作者信息

Lin San San, Kerscher Stefan, Saleh Ahmad, Brandt Ulrich, Gross Uwe, Bohne Wolfgang

机构信息

Institute of Medical Microbiology, University of Göttingen, Kreuzbergring 57, Göttingen D-37075, Germany.

出版信息

Biochim Biophys Acta. 2008 Nov;1777(11):1455-62. doi: 10.1016/j.bbabio.2008.08.006. Epub 2008 Aug 22.

Abstract

The apicomplexan parasite Toxoplasma gondii does not possess complex I of the mitochondrial respiratory chain, but has two genes encoding rotenone-insensitive, non-proton pumping type-II NADH dehydrogenases (NDH2s). The absence of such "alternative" NADH dehydrogenases in the human host defines these enzymes as potential drug targets. TgNDH2-I and TgNDH2-II are constitutively expressed in tachyzoites and bradyzoites and are localized to the mitochondrion as shown by epitope tagging. Functional expression of TgNDH2-I in the yeast Yarrowia lipolytica as an internal enzyme, with the active site facing the mitochondrial matrix, permitted growth in the presence of the complex I inhibitor DQA. Bisubstrate kinetics of TgNDH2-I measured within Y. lipolytica mitochondrial membrane preparations were in accordance with a ping-pong mechanism. Using inhibition kinetics we demonstrate here that 1-hydroxy-2-alkyl-4(1)quinolones with long alkyl chains of C(12) (HDQ) and C(14) are high affinity inhibitors for TgNDH2-I, while compounds with shorter side chains (C(5) and C(6)) displayed significantly higher IC(50) values. The efficiency of the various quinolone derivatives to inhibit TgNDH2-I enzyme activity mirrors their inhibitory potency in vivo, suggesting that a long acyl site chain is critical for the inhibitory potential of these compounds.

摘要

顶复门寄生虫刚地弓形虫不具备线粒体呼吸链的复合体I,但有两个基因编码对鱼藤酮不敏感、不进行质子泵运输的II型NADH脱氢酶(NDH2s)。人类宿主中不存在此类“替代”NADH脱氢酶,这使得这些酶成为潜在的药物靶点。TgNDH2-I和TgNDH2-II在速殖子和缓殖子中组成性表达,通过表位标签显示它们定位于线粒体。TgNDH2-I在解脂耶氏酵母中作为一种内部酶进行功能表达,其活性位点面向线粒体基质,在复合体I抑制剂DQA存在的情况下允许生长。在解脂耶氏酵母线粒体制备物中测量的TgNDH2-I的双底物动力学符合乒乓机制。我们在此利用抑制动力学证明,具有C(12)(HDQ)和C(14)长烷基链的1-羟基-2-烷基-4(1)喹诺酮是TgNDH2-I的高亲和力抑制剂,而具有较短侧链(C(5)和C(6))的化合物显示出明显更高的IC(50)值。各种喹诺酮衍生物抑制TgNDH2-I酶活性的效率反映了它们在体内的抑制效力,表明长酰基侧链对于这些化合物的抑制潜力至关重要。

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