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F 和 P NMR 揭示了参与大肠杆菌 LPS 合成的糖基转移酶的脂质和底物诱导的构象和动力学变化。

Lipid- and substrate-induced conformational and dynamic changes in a glycosyltransferase involved in E. coli LPS synthesis revealed by F and P NMR.

机构信息

Department of Biochemistry and Biophysics, Stockholm University, SE-106 91 Stockholm, Sweden.

Department of Biochemistry and Biophysics, Stockholm University, SE-106 91 Stockholm, Sweden; Department of Chemistry, Umeå University, Umeå, Sweden.

出版信息

Biochim Biophys Acta Biomembr. 2023 Dec;1865(8):184209. doi: 10.1016/j.bbamem.2023.184209. Epub 2023 Aug 7.

Abstract

WaaG is a glycosyltransferase (GT) involved in the synthesis of the bacterial cell wall, and in Escherichia coli it catalyzes the transfer of a glucose moiety from the donor substrate UDP-glucose onto the nascent lipopolysaccharide (LPS) molecule which when completed constitutes the major component of the bacterium's outermost defenses. Similar to other GTs of the GT-B fold, having two Rossman-like domains connected by a short linker, WaaG is believed to undergo complex inter-domain motions as part of its function to accommodate the nascent LPS and UDP-glucose in the catalytic site located in the cleft between the two domains. As the nascent LPS is bulky and membrane-bound, WaaG is a peripheral membrane protein, adding to the complexity of studying the enzyme in a biologically relevant environment. Using specific 5-fluoro-Trp labelling of native and inserted tryptophans and F NMR we herein studied the dynamic interactions of WaaG with lipids using bicelles, and with the donor substrate. Line-shape changes when bicelles are added to WaaG show that the dynamic behavior is altered when binding to the model membrane, while a chemical shift change indicates an altered environment around a tryptophan located in the C-terminal domain of WaaG upon interaction with UDP-glucose or UDP. A lipid-bound paramagnetic probe was used to confirm that the membrane interaction is mediated by a loop region located in the N-terminal domain. Furthermore, the hydrolysis of the donor substrate by WaaG was quantified by P NMR.

摘要

WaaG 是一种参与细菌细胞壁合成的糖基转移酶 (GT),在大肠杆菌中,它催化将葡萄糖部分从供体底物 UDP-葡萄糖转移到新生脂多糖 (LPS) 分子上,当完成时,该分子构成细菌最外层防御的主要成分。与 GT-B 折叠中的其他 GT 类似,WaaG 具有两个罗斯曼样结构域,通过短接头连接,据信它会经历复杂的结构域间运动,作为其功能的一部分,以适应催化位点位于两个结构域之间的新生 LPS 和 UDP-葡萄糖。由于新生 LPS 体积庞大且与膜结合,WaaG 是一种外周膜蛋白,这增加了在生物相关环境中研究该酶的复杂性。使用特定的 5-氟色氨酸标记天然和插入色氨酸和 F NMR,我们在此使用双胶束研究了 WaaG 与脂质的动态相互作用,以及与供体底物的相互作用。当双胶束添加到 WaaG 时,线形状的变化表明当与模型膜结合时,动态行为发生改变,而化学位移变化表明当与 UDP-葡萄糖或 UDP 相互作用时,位于 WaaG C 末端结构域中的色氨酸周围的环境发生改变。使用脂质结合的顺磁探针证实,膜相互作用是通过位于 N 末端结构域的环区域介导的。此外,通过 P NMR 定量测定了 WaaG 对供体底物的水解。

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