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大肠杆菌MurC的次膦酸酯抑制剂的生化特性

Biochemical characterization of a phosphinate inhibitor of Escherichia coli MurC.

作者信息

Marmor S, Petersen C P, Reck F, Yang W, Gao N, Fisher S L

机构信息

Department of Biochemistry, Cancer and Infection Research Area, AstraZeneca R&D Boston, Waltham, Massachusetts 02451, USA.

出版信息

Biochemistry. 2001 Oct 9;40(40):12207-14. doi: 10.1021/bi015567m.

DOI:10.1021/bi015567m
PMID:11580296
Abstract

The bacterial UDP-N-acetylmuramyl-L-alanine ligase (MurC) from Escherichia coli, an essential, cytoplasmic peptidoglycan biosynthetic enzyme, catalyzes the ATP-dependent ligation of L-alanine (Ala) and UDP-N-acetylmuramic acid (UNAM) to form UDP-N-acetylmuramyl-L-alanine (UNAM-Ala). The phosphinate inhibitor 1 was designed and prepared as a multisubstrate/transition state analogue. The compound exhibits mixed-type inhibition with respect to all three enzyme substrates (ATP, UNAM, Ala), suggesting that this compound forms dead-end complexes with multiple enzyme states. Results from isothermal titration calorimetry (ITC) studies supported these findings as exothermic binding was observed under conditions with free enzyme (K(d) = 1.80-2.79 microM, 95% CI), enzyme saturated with ATP (K(d) = 0.097-0.108 microM, 95% CI), and enzyme saturated with the reaction product ADP (K(d) = 0.371-0.751 microM, 95% CI). Titrations run under conditions of saturating UNAM or the product UNAM-Ala did not show heat effects consistent with competitive compound binding to the active site. The potent binding affinity observed in the presence of ATP is consistent with the inhibitor design and the proposed Ordered Ter-Ter mechanism for this enzyme; however, the additional binding pathways suggest that the inhibitor can also serve as a product analogue.

摘要

来自大肠杆菌的细菌UDP-N-乙酰胞壁酰-L-丙氨酸连接酶(MurC)是一种必需的胞质肽聚糖生物合成酶,催化L-丙氨酸(Ala)和UDP-N-乙酰胞壁酸(UNAM)的ATP依赖性连接,形成UDP-N-乙酰胞壁酰-L-丙氨酸(UNAM-Ala)。膦酸盐抑制剂1被设计并制备为多底物/过渡态类似物。该化合物对所有三种酶底物(ATP、UNAM、Ala)均表现出混合型抑制作用,表明该化合物与多种酶状态形成了终产物复合物。等温滴定量热法(ITC)研究结果支持了这些发现,因为在游离酶条件下(K(d)=1.80-2.79 microM,95%置信区间)、ATP饱和的酶条件下(K(d)=0.097-0.108 microM,95%置信区间)以及反应产物ADP饱和的酶条件下(K(d)=0.371-0.751 microM,95%置信区间)均观察到放热结合。在饱和UNAM或产物UNAM-Ala条件下进行的滴定未显示出与竞争性化合物结合到活性位点一致的热效应。在ATP存在下观察到的强结合亲和力与抑制剂设计以及该酶提出的有序Ter-Ter机制一致;然而,额外的结合途径表明该抑制剂也可作为产物类似物。

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