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铜绿假单胞菌的WaaL在体外将O抗原连接到脂多糖核心脂质A的过程中利用ATP。

WaaL of Pseudomonas aeruginosa utilizes ATP in in vitro ligation of O antigen onto lipid A-core.

作者信息

Abeyrathne Priyanka D, Lam Joseph S

机构信息

Department of Molecular and Cellular Biology, University of Guelph, Guelph, ON, N1G 2W1, Canada.

出版信息

Mol Microbiol. 2007 Sep;65(5):1345-59. doi: 10.1111/j.1365-2958.2007.05875.x.

Abstract

waaL has been implicated as the gene that encodes the O-antigen ligase. To date, in vitro biochemical evidence to prove that WaaL possesses ligase activity has been lacking due to the difficulty of purifying WaaL and unavailability of substrates. Here we describe the purification of WaaL, a membrane protein with 11 potential transmembrane segments from Pseudomonas aeruginosa, and the development of an in vitro O-antigen ligase assay. WaaL was expressed in a P. aeruginosa wbpL knockout strain, which is defective in its initial glycosyltransferase for O-antigen biosynthesis. This approach allowed the purification of WaaL without contaminating O-antigen-undecaprenol-phosphate (Und-P) molecules. Purified WaaL resolved to a monomer (35 kDa) and a dimer (70 kDa) band in SDS-PAGE. The substrates for the O-antigen ligase assay, O-antigen-Und-P and lipid A-core were prepared from a waaL mutant. ATP at 2-4 mM is optimum for the O-ligase activity, and ATP hydrolysis by WaaL follows Michaelis-Menten kinetics. Site-directed mutagenesis analysis indicated that the periplasmic loop region of WaaL is important for ligase activity. A waaL mutant of P. aeruginosa could not be cross-complemented by waaL of Escherichia coli, which suggested that each of these proteins has specificity for its cognate core oligosaccharide.

摘要

waaL 被认为是编码 O 抗原连接酶的基因。迄今为止,由于难以纯化 WaaL 以及缺乏底物,尚无体外生化证据证明 WaaL 具有连接酶活性。在此,我们描述了从铜绿假单胞菌中纯化具有 11 个潜在跨膜区段的膜蛋白 WaaL 的方法,以及体外 O 抗原连接酶测定法的开发。WaaL 在铜绿假单胞菌 wbpL 基因敲除菌株中表达,该菌株在 O 抗原生物合成的初始糖基转移酶方面存在缺陷。这种方法使得能够纯化 WaaL 而不污染 O 抗原 - 十一异戊二烯磷酸酯(Und - P)分子。纯化后的 WaaL 在 SDS - PAGE 中呈现出一条单体(35 kDa)带和一条二聚体(70 kDa)带。用于 O 抗原连接酶测定的底物 O 抗原 - Und - P 和脂质 A - 核心是从 waaL 突变体中制备的。2 - 4 mM 的 ATP 对 O 连接酶活性最为适宜,并且 WaaL 催化的 ATP 水解遵循米氏动力学。定点诱变分析表明,WaaL 的周质环区域对连接酶活性很重要。铜绿假单胞菌的 waaL 突变体不能被大肠杆菌的 waaL 交叉互补,这表明这些蛋白质各自对其同源核心寡糖具有特异性。

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