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对酿酒酵母β-碳酸酐酶具有强效抑制活性的二硫代氨基甲酸盐。

Dithiocarbamates with potent inhibitory activity against the Saccharomyces cerevisiae β-carbonic anhydrase.

作者信息

Bozdag Murat, Carta Fabrizio, Vullo Daniela, Isik Semra, AlOthman Zeid, Osman Sameh M, Scozzafava Andrea, Supuran Claudiu T

机构信息

a Laboratorio di Chimica Bioinorganica, Dipartimento di Chimica , Università degli Studi di Firenze , Sesto Fiorentino , Florence , Italy .

b Department of Chemistry, College of Science , King Saud University , Riyadh , Saudi Arabia , and.

出版信息

J Enzyme Inhib Med Chem. 2016;31(1):132-6. doi: 10.3109/14756366.2015.1010529. Epub 2015 Feb 11.

Abstract

Dithiocarbamates (DTCs) prepared from primary or secondary amines, which incorporated amino/hydroxyl-alkyl, mono-/bicyclic aliphatic/heterocyclic rings based on the quinuclidine, piperidine, hydroxy-/carboxy-/amino-substituted piperidine, morpholine and piperazine scaffolds, were investigated for the inhibition of α- and β-carbonic anhydrases (CAs, EC 4.2.1.1) of pharmacologic relevance, such as the human (h) isoform hCA I and II, as well as the Saccharomyces cerevisiae β-CA, scCA. The yeast and its β-CA were shown earlier to be useful models of pathogenic fungal infections. The DTCs investigated here were medium potency hCA I inhibitors (K(I)s of 66.5-910 nM), were more effective as hCA II inhibitors (K(I)s of 8.9-107 nM) and some of them showed excellent, low nanomolar activity against the yeast enzyme, with inhibition constants ranging between 6.4 and 259 nM. The detailed structure activity relationship for inhibition of the yeast and human enzymes is discussed. Several of the investigated DTCs showed excellent selectivity ratios for inhibiting the yeast over the human cytosolic CA isoforms.

摘要

研究了由伯胺或仲胺制备的二硫代氨基甲酸盐(DTCs),这些DTCs含有基于奎宁环、哌啶、羟基/羧基/氨基取代哌啶、吗啉和哌嗪支架的氨基/羟基烷基、单环/双环脂肪族/杂环,用于抑制具有药理学相关性的α-和β-碳酸酐酶(CAs,EC 4.2.1.1),如人(h)同工型hCA I和II,以及酿酒酵母β-CA,即scCA。酵母及其β-CA earlier被证明是致病性真菌感染的有用模型。此处研究的DTCs是中等效力的hCA I抑制剂(抑制常数K(I)为66.5 - 910 nM),作为hCA II抑制剂更有效(K(I)为8.9 - 107 nM),其中一些对酵母酶表现出优异的低纳摩尔活性,抑制常数在6.4至259 nM之间。讨论了抑制酵母和人酶的详细构效关系。一些研究的DTCs在抑制酵母酶与人胞质CA同工型方面表现出优异的选择性比率。

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