Kaniuk Natalia A, Vinogradov Evgeny, Whitfield Chris
Department of Microbiology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.
J Biol Chem. 2004 Aug 27;279(35):36470-80. doi: 10.1074/jbc.M401366200. Epub 2004 Jun 23.
The ligation of O antigen polysaccharide to lipid A-core oligosaccharide is a late step in the formation of the complex glycolipid known as lipopolysaccharide. Although the process has been localized to the periplasmic face of the inner membrane, details of the ligation mechanism have not been resolved. To date, there is only one gene product (WaaL, often referred to as "ligase") known to be required. There exists a requirement for a specific lipid A-core oligosaccharide acceptor structure for ligation activity, and it has been proposed that the WaaL protein imparts this acceptor specificity. Here the structural requirements in the core oligosaccharide acceptor for O antigen ligation are investigated in prototype serovars of Salmonella enterica. Complementation experiments in mutants with defined core oligosaccharide structure indicate that the specificity of the ligation reaction for a particular core oligosaccharide structure is not dependent on the WaaL protein alone. The data provide the first indication of a more complicated recognition process involving additional cellular components.
O抗原多糖与脂多糖核心寡糖的连接是形成称为脂多糖的复合糖脂的后期步骤。尽管该过程已定位在内膜的周质面,但连接机制的细节尚未解决。迄今为止,已知仅有一种基因产物(WaaL,通常称为“连接酶”)是必需的。连接活性需要特定的脂多糖核心寡糖受体结构,并且有人提出WaaL蛋白赋予这种受体特异性。在此,在肠炎沙门氏菌的原型血清型中研究了核心寡糖受体中O抗原连接的结构要求。在具有确定的核心寡糖结构的突变体中的互补实验表明,连接反应对特定核心寡糖结构的特异性并不单独依赖于WaaL蛋白。这些数据首次表明涉及其他细胞成分的识别过程更为复杂。