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脂肪酶催化亚磷酸氢酯对乙烯基酯的混杂马氏加成反应合成细胞毒性α-酰氧基膦酸酯衍生物

Promiscuous Lipase-Catalyzed Markovnikov Addition of H-Phosphites to Vinyl Esters for the Synthesis of Cytotoxic α-Acyloxy Phosphonate Derivatives.

作者信息

Kowalczyk Paweł, Koszelewski Dominik, Gawdzik Barbara, Samsonowicz-Górski Jan, Kramkowski Karol, Wypych Aleksandra, Lizut Rafał, Ostaszewski Ryszard

机构信息

Department of Animal Nutrition, The Kielanowski Institute of Animal Physiology and Nutrition, Polish Academy of Sciences, Instytucka 3, 05-110 Jabłonna, Poland.

Institute of Organic Chemistry PAS, Kasprzaka 44/52, 01-224 Warsaw, Poland.

出版信息

Materials (Basel). 2022 Mar 7;15(5):1975. doi: 10.3390/ma15051975.

DOI:10.3390/ma15051975
PMID:35269205
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8912074/
Abstract

An enzymatic route for phosphorous-carbon- bond formation is developed by discovering new promiscuous activity of lipase. This biocatalytic transformation of phosphorous-carbon- bond addition leads to biologically and pharmacologically relevant α-acyloxy phosphonates with methyl group in α-position. A series of target compounds were synthesized with yields ranging from 54% to 83% by enzymatic reaction with (CcL) lipase via Markovnikov addition of -phosphites to vinyl esters. We carefully analyzed the best conditions for the given reaction such as the type of enzyme, temperature, and type of solvent. The developed protocol is applicable to a range of -phosphites and vinyl esters significantly simplifying the preparation of synthetically challenging α-pivaloyloxy phosphonates. Further, the obtained compounds were validated as new potential antimicrobial drugs with characteristic bacterial strains and DNA modification recognized by the Fpg protein, -methyl purine glycosylases as new substrates. The impact of the methyl group located in the α-position of the studied α-acyloxy phosphonates on the antimicrobial activity was demonstrated. The pivotal role of this group on inhibitory activity against selected pathogenic strains was revealed. The observed results are especially important in the case of the increasing resistance of bacteria to various drugs and antibiotics.

摘要

通过发现脂肪酶新的混杂活性,开发了一种形成磷 - 碳键的酶促途径。这种磷 - 碳键加成的生物催化转化产生了在α位带有甲基的具有生物学和药理学相关性的α - 酰氧基膦酸酯。通过(CcL)脂肪酶催化亚磷酸酯与乙烯基酯进行马氏加成的酶促反应,合成了一系列目标化合物,产率在54%至83%之间。我们仔细分析了给定反应的最佳条件,如酶的类型、温度和溶剂类型。所开发的方案适用于一系列亚磷酸酯和乙烯基酯,显著简化了合成具有挑战性的α - 新戊酰氧基膦酸酯的制备过程。此外,所获得的化合物被验证为具有新的潜在抗菌药物,其对特定细菌菌株的作用以及Fpg蛋白识别的DNA修饰、 - 甲基嘌呤糖基化酶作为新底物。研究了α - 酰氧基膦酸酯α位甲基对抗菌活性的影响。揭示了该基团对所选致病菌株抑制活性的关键作用。在细菌对各种药物和抗生素耐药性不断增加的情况下,观察到的结果尤为重要。

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