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基于尿苷的抑制剂作为靶向大肠杆菌LpxC的新型抗生素先导化合物。

Uridine-based inhibitors as new leads for antibiotics targeting Escherichia coli LpxC.

作者信息

Barb Adam W, Leavy Tanya M, Robins Lori I, Guan Ziqiang, Six David A, Zhou Pei, Hangauer Matthew J, Bertozzi Carolyn R, Raetz Christian R H

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Biochemistry. 2009 Apr 14;48(14):3068-77. doi: 10.1021/bi900167q.

Abstract

The UDP-3-O-(R-3-hydroxyacyl)-N-acetylglucosamine deacetylase LpxC catalyzes the committed reaction of lipid A (endotoxin) biosynthesis in Gram-negative bacteria and is a validated antibiotic target. Although several previously described compounds bind to the unique acyl chain binding passage of LpxC with high affinity, strategies to target the enzyme's UDP-binding site have not been reported. Here the identification of a series of uridine-based LpxC inhibitors is presented. The most potent examined, 1-68A, is a pH-dependent, two-step, covalent inhibitor of Escherichia coli LpxC that competes with UDP to bind the enzyme in the first step of inhibition. Compound 1-68A exhibits a K(I) of 54 muM and a maximal rate of inactivation (k(inact)) of 1.7 min(-1) at pH 7.4. Dithiothreitol, glutathione and the C207A mutant of E. coli LpxC prevent the formation of a covalent complex by 1-68A, suggesting a role for Cys-207 in inhibition. The inhibitory activity of 1-68A and a panel of synthetic analogues identified moieties necessary for inhibition. 1-68A and a 2-dehydroxy analogue, 1-68Aa, inhibit several purified LpxC orthologues. These compounds may provide new scaffolds for extension of existing LpxC-inhibiting antibiotics to target the UDP binding pocket.

摘要

UDP-3-O-(R-3-羟基酰基)-N-乙酰葡糖胺脱乙酰酶LpxC催化革兰氏阴性菌中脂多糖(内毒素)生物合成的关键反应,是一个经过验证的抗生素作用靶点。尽管先前描述的几种化合物能以高亲和力结合LpxC独特的酰基链结合通道,但尚未有针对该酶UDP结合位点的策略报道。本文介绍了一系列基于尿苷的LpxC抑制剂的鉴定情况。所检测的最有效抑制剂1-68A是一种pH依赖性、两步共价型大肠杆菌LpxC抑制剂,在抑制的第一步中与UDP竞争结合该酶。化合物1-68A在pH 7.4时的抑制常数(K(I))为54 μM,最大失活速率(k(inact))为1.7 min⁻¹。二硫苏糖醇、谷胱甘肽和大肠杆菌LpxC的C207A突变体可阻止1-68A形成共价复合物,表明半胱氨酸-207在抑制过程中发挥作用。1-68A及一组合成类似物的抑制活性确定了抑制所需的基团。1-68A和一种2-脱羟基类似物1-68Aa可抑制几种纯化的LpxC直系同源物。这些化合物可能为扩展现有抑制LpxC的抗生素以靶向UDP结合口袋提供新的骨架。

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