Kido N, Kobayashi H
Unit of Biosystems, School of Informatics and Sciences, Nagoya University, Nagoya, Aichi 464-8601, Japan.
J Bacteriol. 2000 May;182(9):2567-73. doi: 10.1128/JB.182.9.2567-2573.2000.
wbdA is a mannosyltransferase gene that is involved in synthesis of the Escherichia coli O9a polysaccharide, a mannose homopolymer with a repeating unit of 2-alphaMan-1,2-alphaMan-1,3-alphaMan-1, 3-alphaMan-1. The equivalent structural O polysaccharide in the E. coli O9 and Klebsiella O3 strains is 2-alphaMan-1,2-alphaMan-1, 2-alphaMan-1,3-alphaMan-1,3-alphaMan-1, with an excess of one mannose in the 1,2 linkage. We have cloned wbdA genes from these O9 and O3 strains and shown by genetic and functional studies that wbdA is the only gene determining the O-polysaccharide structure of O9 or O9a. Based on functional analysis of chimeric genes and site-directed mutagenesis, we showed that a single amino acid substitution, C55R, in WbdA of E. coli O9 converts the O9 polysaccharide into O9a. DNA sequencing revealed the substitution to be conserved in other E. coli O9a strains. The reverse substitution, R55C, in WbdA of E. coli O9a resulted in lipopolysaccharide synthesis showing no ladder profile instead of the conversion of O9a to O9. This suggests that more than one amino acid substitution in WbdA is required for conversion from O9a to O9.
wbdA是一种甘露糖基转移酶基因,参与大肠杆菌O9a多糖的合成,该多糖是一种甘露糖同聚物,其重复单元为2-α-甘露糖-1,2-α-甘露糖-1,3-α-甘露糖-1,3-α-甘露糖-1。大肠杆菌O9和肺炎克雷伯菌O3菌株中与之结构相当的O多糖为2-α-甘露糖-1,2-α-甘露糖-1,2-α-甘露糖-1,3-α-甘露糖-1,3-α-甘露糖-1,在1,2连接中有一个额外的甘露糖。我们已从这些O9和O3菌株中克隆出wbdA基因,并通过遗传和功能研究表明,wbdA是决定O9或O9a的O-多糖结构的唯一基因。基于嵌合基因的功能分析和定点诱变,我们发现大肠杆菌O9的WbdA中单个氨基酸取代C55R可将O9多糖转化为O9a。DNA测序显示该取代在其他大肠杆菌O9a菌株中是保守的。大肠杆菌O9a的WbdA中的反向取代R55C导致脂多糖合成未显示梯状图谱,而不是将O9a转化为O9。这表明从O9a转化为O9需要WbdA中不止一个氨基酸取代。