Keenleyside W J, Whitfield C
Department of Microbiology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.
J Biol Chem. 1996 Nov 8;271(45):28581-92. doi: 10.1074/jbc.271.45.28581.
The plasmid-encoded gene cluster for O:54 O-polysaccharide synthesis in Salmonella enterica serovar Borreze (rfbO:54) contains three genes that direct synthesis of a ManNAc homopolymer with alternating beta1,3 and beta1,4 linkages. In Escherichia coli K-12, RfbAO:54 adds the first ManNAc residue to the Rfe (UDP-GlcpNAc::undecaprenylphosphate GlcpNAc-1-phosphate transferase)- modified lipopolysaccharide core. Hydrophobic cluster analysis of RfbAO:54 indicates this protein belongs to the ExoU family of nonprocessive beta-glycosyltransferases. Two putative catalytic residues and a potential substrate-binding motif were identified in RfbAO:54. Topological analysis of RfbBO:54 predicts four transmembrane domains and a large central cytoplasmic domain. The latter shares homology with a similar domain in the processive beta-glycosyltransferases Cps3S of Streptococcus pneumoniae and HasA of Streptococcus pyogenes. Hydrophobic cluster analysis of RfbBO:54 and Cps3S indicates both possess the structural features characteristic of the HasA family of processive beta-glycosyltransferases. Four potential catalytic residues and a putative substrate-binding motif were identified in RfbBO:54. In Deltarfb E. coli K-12, RfbAO:54 and RfbBO:54 direct synthesis of smooth O:54 lipopolysaccharide, indicating that this O-polysaccharide involves a novel pathway for O-antigen transport. Based on sequence and structural conservation, 15 new ExoU-related and 17 new HasA-related transferases were identified.
肠炎沙门氏菌博勒泽血清型(rfbO:54)中编码O:54 O-多糖合成的质粒基因簇包含三个指导合成具有交替β1,3和β1,4连接的N-乙酰甘露糖胺均聚物的基因。在大肠杆菌K-12中,RfbAO:54将第一个N-乙酰甘露糖胺残基添加到经Rfe(UDP-GlcpNAc::十一异戊烯磷酸GlcpNAc-1-磷酸转移酶)修饰的脂多糖核心上。对RfbAO:54的疏水簇分析表明该蛋白属于非连续β-糖基转移酶的ExoU家族。在RfbAO:54中鉴定出两个推定的催化残基和一个潜在的底物结合基序。对RfbBO:54的拓扑分析预测有四个跨膜结构域和一个大的中央胞质结构域。后者与肺炎链球菌的连续β-糖基转移酶Cps3S和化脓性链球菌的HasA中类似的结构域具有同源性。对RfbBO:54和Cps3S的疏水簇分析表明两者都具有连续β-糖基转移酶HasA家族的特征性结构特征。在RfbBO:54中鉴定出四个潜在的催化残基和一个推定的底物结合基序。在缺失rfb的大肠杆菌K-12中,RfbAO:54和RfbBO:54指导合成光滑的O:54脂多糖,表明这种O-多糖涉及一种新 的O抗原转运途径。基于序列和结构保守性,鉴定出15种新的ExoU相关转移酶和17种新的HasA相关转移酶。