Heinrichs D E, Yethon J A, Amor P A, Whitfield C
Department of Microbiology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.
J Biol Chem. 1998 Nov 6;273(45):29497-505. doi: 10.1074/jbc.273.45.29497.
The major core oligosaccharide biosynthesis operons from prototype Escherichia coli strains displaying R1 and R4 lipopolysaccharide core types were polymerase chain reaction-amplified and analyzed. Comparison of deduced products of the open reading frames between the two regions indicate that all but two share total similarities of 94% or greater. Core oligosaccharide structures resulting from nonpolar insertion mutations in each gene of the core OS biosynthesis operon in the R1 strain allowed assignment of all of the glycosyltransferase enzymes required for outer core assembly. The difference between the R1 and R4 core oligosaccharides results from the specificity of the WaaV protein (a beta1, 3-glucosyltransferase) in R1 and WaaX (a beta1, 4-galactosyltransferase) in R4. Complementation of the waaV mutant of the R1 prototype strain with the waaX gene of the R4 strain converted the core oligosaccharide from an R1- to an R4-type lipopolysaccharide core molecule. Aside from generating core oligosaccharide specificity, the unique beta-linked glucopyranosyl residue of the R1 core plays a crucial role in organization of the lipopolysaccharide. This residue provides a novel attachment site for lipid A-core-linked polysaccharides and distinguishes the R1-type LPS from existing models for enterobacterial lipopolysaccharides.
对呈现R1和R4脂多糖核心类型的典型大肠杆菌菌株的主要核心寡糖生物合成操纵子进行了聚合酶链反应扩增和分析。两个区域之间开放阅读框推导产物的比较表明,除了两个之外,所有产物的总体相似性都达到94%或更高。R1菌株核心寡糖生物合成操纵子中每个基因的非极性插入突变产生的核心寡糖结构,使得能够确定外核心组装所需的所有糖基转移酶。R1和R4核心寡糖之间的差异源于R1中WaaV蛋白(一种β1,3-葡糖基转移酶)和R4中WaaX(一种β1,4-半乳糖基转移酶)的特异性。用R4菌株的waaX基因对R1原型菌株的waaV突变体进行互补,可将核心寡糖从R1型脂多糖核心分子转变为R4型。除了产生核心寡糖特异性外,R1核心独特的β-连接吡喃葡萄糖基残基在脂多糖的组织中起着关键作用。该残基为脂多糖A-核心连接多糖提供了一个新的附着位点,并将R1型脂多糖与现有的肠杆菌脂多糖模型区分开来。