Brockhausen Inka, Hu Bo, Liu Bin, Lau Kenneth, Szarek Walter A, Wang Lei, Feng Lu
Department of Medicine and Department of Biochemistry, Queen's University, Kingston, Ontario K7L 3N6, Canada.
J Bacteriol. 2008 Jul;190(14):4922-32. doi: 10.1128/JB.00160-08. Epub 2008 May 16.
The O antigens of outer membrane-bound lipopolysaccharides (LPS) in gram-negative bacteria are oligosaccharides consisting of repeating units with various structures and antigenicities. The O56 and O152 antigens of Escherichia coli both contain a Glc-beta1-3-GlcNAc linkage within the repeating unit. We have cloned and identified the genes (wfaP in O56 and wfgD in O152) within the two O-antigen gene clusters that encode glucosyltransferases involved in the synthesis of this linkage. A synthetic substrate analog of the natural acceptor substrate undecaprenol-pyrophosphate-lipid [GlcNAc-alpha-PO3-PO3-(CH2)11-O-phenyl] was used as an acceptor and UDP-Glc as a donor substrate to demonstrate that both wfgD and wfaP encode glucosyltransferases. Enzyme products from both glucosyltransferases were isolated by high-pressure liquid chromatography and analyzed by nuclear magnetic resonance. The spectra showed the expected Glc-beta1-3-GlcNAc linkage in the products, confirming that both WfaP and WfgD are forms of UDP-Glc: GlcNAc-pyrophosphate-lipid beta-1,3-glucosyltransferases. Both WfaP and WfgD have a DxD sequence, which is proposed to interact with phosphate groups of the nucleotide donor through the coordination of a metal cation, and a short hydrophobic sequence at the C terminus that may help to associate the enzymes with the inner membrane. We showed that the enzymes have similar properties and substrate recognition. They both require a divalent cation (Mn2+ or Mg2+) for activity, are deactivated by detergents, have a broad pH optimum, and require the pyrophosphate-sugar linkage in the acceptor substrate for full activity. Substrates lacking phosphate or pyrophosphate linked to GlcNAc were inactive. The length of the aliphatic chain of acceptor substrates also contributes to the activity.
革兰氏阴性菌外膜结合脂多糖(LPS)的O抗原是由具有各种结构和抗原性的重复单元组成的寡糖。大肠杆菌的O56和O152抗原在重复单元中均含有Glc-β1-3-GlcNAc连接。我们已经克隆并鉴定了两个O抗原基因簇中的基因(O56中的wfaP和O152中的wfgD),这些基因编码参与该连接合成的葡糖基转移酶。使用天然受体底物十一异戊烯焦磷酸-脂质[GlcNAc-α-PO3-PO3-(CH2)11-O-苯基]的合成底物类似物作为受体,UDP-Glc作为供体底物,以证明wfgD和wfaP均编码葡糖基转移酶。通过高压液相色谱法分离两种葡糖基转移酶的酶产物,并通过核磁共振进行分析。光谱显示产物中预期的Glc-β1-3-GlcNAc连接,证实WfaP和WfgD均为UDP-Glc:GlcNAc-焦磷酸-脂质β-1,3-葡糖基转移酶的形式。WfaP和WfgD均具有DxD序列,该序列被认为通过金属阳离子的配位与核苷酸供体的磷酸基团相互作用,并且在C末端具有短的疏水序列,这可能有助于使酶与内膜结合。我们表明这些酶具有相似的性质和底物识别能力。它们都需要二价阳离子(Mn2+或Mg2+)来发挥活性,会被去污剂失活,具有较宽的最适pH值,并且需要受体底物中的焦磷酸-糖连接来实现完全活性。缺乏与GlcNAc连接的磷酸或焦磷酸的底物无活性。受体底物脂肪链的长度也对活性有影响。