Department of Microbiology and Immunology, Infectious Diseases Research Group, Siebens-Drake Research Institute, University of Western Ontario, London, Ontario N6A5C1, Canada.
Glycobiology. 2010 Nov;20(11):1389-401. doi: 10.1093/glycob/cwq104. Epub 2010 Jun 29.
WbaP catalyzes the transfer of galactose-1-phosphate onto undecaprenyl phosphate (Und-P). The enzyme belongs to a large family of bacterial membrane proteins required for initiation of the synthesis of O antigen lipopolysaccharide and polysaccharide capsules. Previous work in our laboratory demonstrated that the last transmembrane helix and C-terminal tail region of WbaP (WbaP(CT)) are sufficient for enzymatic activity. Here, we demonstrate the cytoplasmic location of the WbaP C-terminal tail and show that WbaP(CT) domain N-terminally fused to thioredoxin (TrxA-WbaP(CT)) exhibits improved protein folding and enhanced transferase activity. Alanine replacement of highly conserved charged or polar amino acids identified seven critical residues for enzyme activity in vivo and in vitro. Four of these residues are located in regions predicted to be α-helical. These regions and their secondary structure predictions are conserved in distinct WbaP family members, suggesting they may contribute to form a conserved catalytic center.
WbaP 催化将半乳糖-1-磷酸转移到十一异戊烯磷酸 (Und-P)。该酶属于细菌膜蛋白大家族,对于起始 O 抗原脂多糖和多糖荚膜的合成是必需的。我们实验室之前的工作表明,WbaP 的最后一个跨膜螺旋和 C 末端尾部区域(WbaP(CT))足以具有酶活性。在这里,我们证明了 WbaP C 末端尾部的细胞质位置,并表明 WbaP(CT)结构域与硫氧还蛋白(TrxA-WbaP(CT))在 N 端融合,表现出改善的蛋白质折叠和增强的转移酶活性。高度保守的带电荷或极性氨基酸的丙氨酸替换鉴定了体内和体外酶活性的七个关键残基。其中四个残基位于预测为α-螺旋的区域。这些区域及其二级结构预测在不同的 WbaP 家族成员中是保守的,这表明它们可能有助于形成一个保守的催化中心。