首页> 美国卫生研究院文献>International Journal of Molecular Sciences >The Effect of Substituted Benzene-Sulfonamides and Clinically Licensed Drugs on the Catalytic Activity of CynT2 a Carbonic Anhydrase Crucial for Escherichia coli Life Cycle
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The Effect of Substituted Benzene-Sulfonamides and Clinically Licensed Drugs on the Catalytic Activity of CynT2 a Carbonic Anhydrase Crucial for Escherichia coli Life Cycle

机译:取代的苯磺酰胺和临床许可的药物对CynT2的催化活性的影响CynT2是一种碳酸酐酶对大肠杆菌的生命周期至关重要。

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摘要

Proteins are relevant antimicrobial drug targets, and among them, enzymes represent a significant group, since most of them catalyze reactions essential for supporting the central metabolism, or are necessary for the pathogen vitality. Genomic exploration of pathogenic and non-pathogenic microorganisms has revealed genes encoding for a superfamily of metalloenzymes, known as carbonic anhydrases (CAs, EC 4.2.1.1). CAs catalyze the physiologically crucial reversible reaction of the carbon dioxide hydration to bicarbonate and protons. Herein, we investigated the sulfonamide inhibition profile of the recombinant -CA (CynT2) identified in the genome of the Gram-negative bacterium . This biocatalyst is indispensable for the growth of the microbe at atmospheric pCO . Surprisingly, this enzyme has not been investigated for its inhibition with any class of CA inhibitors. Here, we show that CynT2 was strongly inhibited by some substituted benzene-sulfonamides and the clinically used inhibitor sulpiride (K s in the range of 82–97 nM). This study may be relevant for identifying novel CA inhibitors, as well as for another essential part of the drug discovery pipeline, such as the structure–activity relationship for this class of enzyme inhibitors.
机译:蛋白质是相关的抗微生物药物靶标,其中的酶代表重要的一组,因为大多数酶催化支持中央代谢所必需的反应,或者是病原体活力所必需的反应。对致病性和非致病性微生物的基因组研究揭示了编码金属酶超家族(称为碳酸酐酶)的基因(CA,EC 4.2.1.1)。 CA催化二氧化碳水合为碳酸氢根和质子的生理关键的可逆反应。在这里,我们调查了革兰氏阴性细菌基因组中鉴定的重组-CA(CynT2)的磺酰胺抑制谱。在大气pCO下,这种生物催化剂是微生物生长不可或缺的。出人意料的是,尚未对该酶对任何种类的CA抑制剂的抑制作用进行过研究。在这里,我们显示CynT2被某些取代的苯磺酰胺和临床使用的抑制剂舒必利(K s在82–97 nM范围内)强烈抑制。这项研究可能与鉴定新型CA抑制剂有关,也可能与药物开发流程的另一个重要部分有关,例如此类酶抑制剂的结构-活性关系。

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