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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >The crystal structure of Sporosarcina pasteurii urease in a complex with citrate provides new hints for inhibitor design
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The crystal structure of Sporosarcina pasteurii urease in a complex with citrate provides new hints for inhibitor design

机译:柠檬酸孢子菌中巴氏芽孢杆菌脲酶的晶体结构为抑制剂设计提供了新的提示

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Urease, the enzyme that catalyses the hydrolysis of urea, is a virulence factor for a large number of ureolytic bacterial human pathogens. The increasing resistance of these pathogens to common antibiotics as well as the need to control urease activity to improve the yield of soil nitrogen fertilization in agricultural applications has stimulated the development of novel classes of molecules that target urease as enzyme inhibitors. We report on the crystal structure at 1.50-? resolution of a complex formed between citrate and urease from Sporosarcina pasteurii, a widespread and highly ureolytic soil bacterium. The fit of the ligand to the active site involves stabilizing interactions, such as a carboxylate group that binds the nickel ions at the active site and several hydrogen bonds with the surrounding residues. The citrate ligand has a significantly extended structure compared with previously reported ligands co-crystallized with urease and thus represents a unique and promising scaffold for the design of new, highly active, stable, selective inhibitors.
机译:脲酶是一种催化尿素水解的酶,是许多尿素分解细菌人类病原体的致病因子。这些病原体对常见抗生素的抵抗力不断增强,以及在农业应用中控制脲酶活性以提高土壤氮肥产量的需求,已刺激了以脲酶为酶抑制剂的新型分子的开发。我们报告晶体结构为1.50-?。解决了来自广泛分布且具有高尿素分解性土壤细菌的巴氏孢子虫(Sporosarcina pasteurii)的柠檬酸盐和脲酶之间形成的复合物的分辨率。配体与活性位点的拟合涉及稳定的相互作用,例如在活性位点结合镍离子的羧基和与周围残基的几个氢键。与先前报道的与脲酶共结晶的配体相比,柠檬酸酯配体具有显着延伸的结构,因此代表了设计新型,高活性,稳定,选择性抑制剂的独特而有前途的支架。

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