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来自大肠杆菌O7:K1的UDP-半乳糖:GlcNAc-R β1,3-半乳糖基转移酶(WbbD)的受体底物特异性

Acceptor substrate specificity of UDP-Gal: GlcNAc-R beta1,3-galactosyltransferase (WbbD) from Escherichia coli O7:K1.

作者信息

Brockhausen Inka, Riley John G, Joynt Meileen, Yang Xiaojing, Szarek Walter A

机构信息

Department of Biochemistry, and The Arthritis Centre and Human Mobility Research Centre, Queen's University, Etherington Hall, Kingston, ON, K7L 3N6, Canada.

出版信息

Glycoconj J. 2008 Oct;25(7):663-73. doi: 10.1007/s10719-008-9127-7. Epub 2008 Jun 7.

Abstract

Most of the glycosyltransferases involved in O antigen biosynthesis have not yet been characterized. We recently demonstrated that the wbbD gene of the O7 lipopolysaccharide biosynthesis cluster in E. coli strain VW187 (O7:K1) encodes WbbD, a UDP-Gal: GlcNAcalpha-pyrophosphate-lipid beta1,3-Gal-transferase (EC 2.4.1., accession number AAC27537) that transfers the second sugar moiety in the assembly of the O7 repeating unit. The enzyme utilizes undecaprenol-pyrophosphate-GlcNAc as a natural acceptor substrate, but can also transfer Gal to GlcNAcalpha-PO(3)-PO(3)-(CH(2))(11)-O-phenyl (GlcNAc-PP-PhU). A number of acceptor substrate analogs have now been tested to further characterize the acceptor specificity of WbbD and to determine the roles of the pyrophosphate bond and the lipid moiety in the acceptor substrate. The enzyme was found to have a low activity with a substrate containing only one phosphate group directly alpha-linked to GlcNAc, and the enzyme was inactive when the phosphate was absent or further removed from the anomeric carbon of GlcNAc. Modifications of the lipid chain yielded substrates with variable activities. GlcNAc derivatives that were inactive as substrates did not inhibit WbbD suggesting that these compounds did not bind to the active site of the enzyme. The specificity of mammalian beta4-galactosyltransferase I has been compared to that of WbbD. The results indicate that the bacterial WbbD enzyme has a distinct specificity for GlcNAc-PP-lipid, and that WbbD recognition of its acceptor substrate is very different from that of the ubiquitous mammalian beta4-galactosyltransferase I. These studies help to understand mechanisms of O antigen synthesis, to develop methods to synthesize defined oligosaccharide structures and to develop specific O antigen inhibitors.

摘要

参与O抗原生物合成的大多数糖基转移酶尚未得到表征。我们最近证明,大肠杆菌菌株VW187(O7:K1)的O7脂多糖生物合成簇中的wbbD基因编码WbbD,一种UDP-半乳糖:GlcNAcα-焦磷酸-脂质β1,3-半乳糖转移酶(EC 2.4.1.,登录号AAC27537),它在O7重复单元的组装过程中转移第二个糖基。该酶以十一异戊烯焦磷酸-GlcNAc作为天然受体底物,但也能将半乳糖转移到GlcNAcα-PO(3)-PO(3)-(CH(2))(11)-O-苯基(GlcNAc-PP-PhU)上。现在已经测试了许多受体底物类似物,以进一步表征WbbD的受体特异性,并确定焦磷酸键和脂质部分在受体底物中的作用。发现该酶对仅含有一个直接与GlcNAcα连接的磷酸基团的底物活性较低,并且当磷酸基团不存在或从GlcNAc的异头碳上进一步去除时,该酶无活性。脂质链的修饰产生了具有不同活性的底物。作为底物无活性的GlcNAc衍生物不抑制WbbD,这表明这些化合物没有与酶的活性位点结合。已将哺乳动物β4-半乳糖基转移酶I的特异性与WbbD的特异性进行了比较。结果表明,细菌WbbD酶对GlcNAc-PP-脂质具有独特的特异性,并且WbbD对其受体底物的识别与普遍存在的哺乳动物β4-半乳糖基转移酶I非常不同。这些研究有助于理解O抗原合成的机制,开发合成特定寡糖结构的方法以及开发特异性O抗原抑制剂。

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