Kido N, Sugiyama T, Yokochi T, Kobayashi H, Okawa Y
Biosystems, School of Informatics and Sciences, Nagoya University, Japan.
Mol Microbiol. 1998 Mar;27(6):1213-21. doi: 10.1046/j.1365-2958.1998.00765.x.
WbdA (previously MtfA) is one of the mannosyltransferases encoded within the Escherichia coli O9a wb* gene cluster. It is composed of two domains of similar size, connected by an alpha-helix chain. Elimination of the C-terminal half by transposon insertion or gene deletion caused synthesis of an altered structural O-polysaccharide consisting only of alpha-1,2-linked mannose. O9a polysaccharide synthesis was restored by the C-terminal half of WbdA in trans. No membrane incorporation of mannose from GDP mannose was observed in a strain carrying only the gene for truncated WbdA. For mannose incorporation, it was necessary to introduce both wbdB and wbdC genes into the strain. Therefore, it is likely that the N-terminal half of truncated WbdA synthesizes the altered O-polysaccharide together with other mannosyltransferases which participate in the initial reactions of the O9a polysaccharide synthesis. Both N- and C-terminal domains of WbdA are required for the synthesis of the complete E. coli O9a polysaccharide. The chi sequence location between the two domains and homology plot analyses of the wbdA and the WbdA protein suggested that the wbdA gene might have arisen by fusion of two independent genes.
WbdA(以前称为MtfA)是大肠杆菌O9a wb*基因簇中编码的甘露糖基转移酶之一。它由两个大小相似的结构域组成,通过一条α-螺旋链相连。通过转座子插入或基因缺失消除C端一半会导致合成仅由α-1,2-连接的甘露糖组成的结构改变的O-多糖。通过反式导入WbdA的C端一半可恢复O9a多糖的合成。在仅携带截短WbdA基因的菌株中未观察到来自GDP甘露糖的甘露糖整合到膜中。为了整合甘露糖,有必要将wbdB和wbdC基因都导入该菌株。因此,截短的WbdA的N端一半可能与参与O9a多糖合成初始反应的其他甘露糖基转移酶一起合成改变的O-多糖。WbdA的N端和C端结构域都是合成完整的大肠杆菌O9a多糖所必需的。两个结构域之间的chi序列位置以及wbdA和WbdA蛋白的同源性图谱分析表明,wbdA基因可能是由两个独立基因融合产生的。