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首页> 外文期刊>Bioorganic and Medicinal Chemistry >Lipase-mediated stereoselective hydrolysis of stampidine and other phosphoramidate derivatives of stavudine
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Lipase-mediated stereoselective hydrolysis of stampidine and other phosphoramidate derivatives of stavudine

机译:脂肪酶介导的司丹定和司他夫定的其他氨基磷酸酯衍生物的立体选择性水解

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摘要

Enzymatic hydrolysis of stampidine and other aryl phosphate derivatives of stavudine were investigated using the Candida Antarctica Type B lipase. Modeling studies and comparison of the hydrolysis rate constants revealed a chiral preference of the lipase active site for the putative S-stereoisomer. The in vitro anti-HIV activity of these compounds correlated with their susceptibility to lipase- (but not esterase-) mediated hydrolysis. We propose that stampidine undergoes rapid enzymatic hydrolysis in the presence of lipase according to the following biochemical pathway: During the first step, hydrolysis of the ester group results in the formation of carboxylic acid. Subsequent step involves an intramolecular cyclization at the phosphorous center with simultaneous elimination of the phenoxy group to form a cyclic intermediate. In the presence of water, this intermediate is converted into the active metabolite Ala-d4T-MP. We postulate that the lipase hydrolyzes the methyl ester group of the L-alanine side chain to form the cyclic intermediate in a stereoselective fashion. This hypothesis was supported by experimental data showing that chlo-roethyl substituted derivatives of stampidine, which possess a chloroethyl linker unit instead of a methyl ester side chain, were resistant to lipase-mediated hydrolysis, which excludes the possibility of a direct hydrolysis of stampidine at the phosphorous center. Thus, our model implies that the lipase-mediated formation of the cyclic intermediate is a key step in metabolism of stampidine and relies on the initial configuration of the stereoisomers.
机译:使用南极假丝酵母B型脂肪酶研究了司他夫定的司丹定和其他磷酸芳基酯衍生物的酶解作用。建模研究和水解速率常数的比较揭示了脂肪酶活性位点对推定的S-立体异构体的手性偏爱。这些化合物的体外抗HIV活性与其对脂酶(而非酯酶)介导的水解的敏感性相关。我们建议,根据以下生化途径,在脂肪酶存在下,司丹定可进行快速酶促水解:在第一步过程中,酯基团的水解导致形成羧酸。后续步骤涉及在磷中心进行分子内环化,同时消除苯氧基以形成环状中间体。在水的存在下,该中间体被转化为活性代谢产物Ala-d4T-MP。我们假设脂肪酶水解L-丙氨酸侧链的甲酯基团,以立体选择性的方式形成环状中间体。该假设得到了实验数据的支持,实验数据表明,具有氯乙基连接单元而不是甲酯侧链的马丹定的氯-乙基取代衍生物对脂肪酶介导的水解具有抵抗力,这排除了马丹定在90-℃直接水解的可能性。磷中心。因此,我们的模型暗示脂酶介导的环状中间体的形成是马丹定代谢的关键步骤,并依赖于立体异构体的初始构型。

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