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首页> 外文期刊>Catalysts >Enantioselective Bioreduction of Prochiral Pyrimidine Base Derivatives by Boni Protect Fungicide Containing Live Cells of Aureobasidium pullulans
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Enantioselective Bioreduction of Prochiral Pyrimidine Base Derivatives by Boni Protect Fungicide Containing Live Cells of Aureobasidium pullulans

机译:博尼保护含有杀菌剂的金黄色葡萄球菌活细胞对前手性嘧啶碱基衍生物的对映选择性生物还原

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The enzymatic enantioselective bioreduction of prochiral 1-substituted-5-methyl-3-(2-oxo-2-phenylethyl)pyrimidine-2,4(1 H ,3 H )-diones to corresponding chiral alcohols by Boni Protect fungicide containing live cells of Aureobasidium pullulans was studied. The microbe-catalyzed reduction of bulky-bulky ketones provides enantiomerically pure products (96–99% ee). In the presence of A. pullulans ( Aureobasidium pullulans ), one of the enantiotopic hydrides of the dihydropyridine ring coenzyme is selectively transferred to the si sides of the prochiral carbonyl group to give secondary alcohols with R configuration. The reactions were performed under various conditions in order to optimize the procedure with respect to time, solvent, and temperature. The present methodology demonstrates an alternative green way for the synthesis of chiral alcohols in a simple, economical, and eco-friendly biotransformation.
机译:含有Boni Protect杀菌剂的活细胞将手性1-取代的5-甲基-3-(2-氧代-2-苯基乙基)嘧啶-2,4(1 H,3 H)-二酮酶促对映选择性生物还原为相应的手性醇研究了金黄色葡萄球菌的支链淀粉。微生物催化的大体积酮的还原提供了对映体纯的产品(96–99%ee)。在A.pullulans(Aureobasidium pullulans)的存在下,二氢吡啶环辅酶的对映体氢化物之一被选择性地转移到前手性羰基的si侧,得到具有R构型的仲醇。为了在时间,溶剂和温度方面优化程序,反应在各种条件下进行。本方法论证明了一种简单,经济,环保的生物转化方法,用于合成手性醇的另一种绿色方法。

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