Woodford Colin R, Thoden James B, Holden Hazel M
Department of Biochemistry, University of Wisconsin, Madison, WI 53706, United States.
Department of Biochemistry, University of Wisconsin, Madison, WI 53706, United States.
J Struct Biol. 2017 Dec;200(3):267-278. doi: 10.1016/j.jsb.2017.03.002. Epub 2017 Mar 2.
N-formylated sugars are found on the lipopolysaccharides of various pathogenic Gram negative bacteria including Campylobacter jejuni 81116, Francisella tularensis, Providencia alcalifaciens O30, and Providencia alcalifaciens O40. The last step in the biosynthetic pathways for these unusual sugars is catalyzed by N-formyltransferases that utilize N-formyltetrahydrofolate as the carbon source. The substrates are dTDP-linked amino sugars with the functional groups installed at either the C-3' or C-4' positions of the pyranosyl rings. Here we describe a structural and enzymological investigation of the putative N-formyltransferase, FdtF, from Salmonella enterica O60. In keeping with its proposed role in the organism, the kinetic data reveal that the enzyme is more active with dTDP-3-amino-3,6-dideoxy-d-galactose than with dTDP-3-amino-3,6-dideoxy-d-glucose. The structural data demonstrate that the enzyme contains, in addition to the canonical N-formyltransferase fold, an ankyrin repeat moiety that houses a second dTDP-sugar binding pocket. This is only the second time an ankyrin repeat has been shown to be involved in small molecule binding. The research described herein represents the first structural analysis of a sugar N-formyltransferase that specifically functions on dTDP-3-amino-3,6-dideoxy-d-galactose in vivo and thus adds to our understanding of these intriguing enzymes.
N-甲酰化糖存在于多种致病性革兰氏阴性菌的脂多糖上,这些细菌包括空肠弯曲菌81116、土拉弗朗西斯菌、产碱普罗威登斯菌O30和产碱普罗威登斯菌O40。这些特殊糖类生物合成途径的最后一步由利用N-甲酰四氢叶酸作为碳源的N-甲酰基转移酶催化。底物是与dTDP连接的氨基糖,其官能团位于吡喃糖环的C-3'或C-4'位置。在此,我们描述了来自肠炎沙门氏菌O60的假定N-甲酰基转移酶FdtF的结构和酶学研究。与它在该生物体中所提议的作用一致,动力学数据表明该酶对dTDP-3-氨基-3,6-二脱氧-D-半乳糖的活性比对dTDP-3-氨基-3,6-二脱氧-D-葡萄糖的活性更高。结构数据表明,该酶除了具有典型的N-甲酰基转移酶折叠外,还含有一个锚蛋白重复部分,该部分容纳第二个dTDP-糖结合口袋。这是锚蛋白重复序列第二次被证明参与小分子结合。本文所述的研究代表了对一种糖N-甲酰基转移酶的首次结构分析,该酶在体内对dTDP-3-氨基-3,6-二脱氧-D-半乳糖具有特异性作用,从而增进了我们对这些有趣酶的理解。