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脂质A生物合成的N-酰基转移酶LpxD的结构与反应活性

Structure and reactivity of LpxD, the N-acyltransferase of lipid A biosynthesis.

作者信息

Buetow Lori, Smith Terry K, Dawson Alice, Fyffe Stewart, Hunter William N

机构信息

Division of Biological Chemistry and Molecular Microbiology, School of Life Sciences, University of Dundee, Dundee DD1 5EH, United Kingdom.

出版信息

Proc Natl Acad Sci U S A. 2007 Mar 13;104(11):4321-6. doi: 10.1073/pnas.0606356104. Epub 2007 Mar 5.

Abstract

The external layer of the Gram-negative bacterial outer membrane is primarily composed of a protective, selectively permeable LPS. The biosynthesis of LPS relies on UDP-3-O-acyl-glucosamine N-acyltransferase (LpxD), which transfers 3-hydroxy-arachidic acid from acyl carrier protein to the 2' amine of UDP-3-O-myristoyl glucosamine in Chlamydia trachomatis. Our crystallographic study reveals that LpxD is a homotrimer, each subunit of which is constructed from a novel combination of an N-terminal uridine-binding domain, a core lipid-binding domain, and a C-terminal helical extension. Highly conserved residues dominate nucleotide binding. Phe-43 and Tyr-49 form pi-stacking interactions with uracil, and Asn-46 and His-284 form hydrogen bonds with the phosphate groups. These interactions place the glucosamine moiety at the catalytic center formed by two adjacent subunits. Here His-247 and His-284 contribute to a mechanism involving nucleophilic attack by the amine of one substrate on the carbonyl carbon of an acyl carrier protein thioester conjugate. Serendipitously, our study reveals a fatty acid (FA) binding groove near the catalytic center. MS elucidated the presence of a FA mixture binding to LpxD, with palmitic acid the most prevalent. The placement of UDP-N-acetylglucosamine and the FA provides details of N-acyltransferase ligand interactions and allows for a description of structure and reactivity at an early stage of LPS assembly.

摘要

革兰氏阴性菌外膜的外层主要由具有保护作用的、选择性通透的脂多糖(LPS)组成。LPS的生物合成依赖于UDP-3-O-酰基葡糖胺N-酰基转移酶(LpxD),在沙眼衣原体中,该酶将3-羟基花生酸从酰基载体蛋白转移至UDP-3-O-肉豆蔻酰葡糖胺的2'-胺基上。我们的晶体学研究表明,LpxD是一个同三聚体,其每个亚基由一个N端尿苷结合结构域、一个核心脂质结合结构域和一个C端螺旋延伸结构域的新型组合构成。高度保守的残基主导核苷酸结合。苯丙氨酸-43和酪氨酸-49与尿嘧啶形成π-堆积相互作用,天冬酰胺-46和组氨酸-284与磷酸基团形成氢键。这些相互作用将葡糖胺部分置于由两个相邻亚基形成的催化中心。在此,组氨酸-247和组氨酸-284参与了一种机制,该机制涉及一种底物的胺对酰基载体蛋白硫酯共轭物的羰基碳进行亲核攻击。意外的是,我们的研究在催化中心附近发现了一个脂肪酸(FA)结合凹槽。质谱分析阐明了与LpxD结合的FA混合物的存在,其中棕榈酸最为普遍。UDP-N-乙酰葡糖胺和FA的位置提供了N-酰基转移酶配体相互作用的细节,并有助于描述LPS组装早期的结构和反应活性。

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