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Distinct functional domains of the Salmonella enterica WbaP transferase that is involved in the initiation reaction for synthesis of the O antigen subunit

机译:Salmonella肠道WBAP转移酶的不同功能结构域,其参与合成O抗原亚基的起始反应

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WbaP is a membrane enzyme that initiates O antigen synthesis in Salmonella enterica by catalysing the transfer of galactose 1-phosphate (Gal-1-P) onto undecaprenyl phosphate (Und-P). WbaP possesses at least three predicted structural domains: an N-terminal region containing four transmembrane helices, a large central periplasmic loop, and a C-terminal domain containing the last transmembrane helix and a large cytoplasmic tail. In this work, we investigated the contribution of each region to WbaP function by constructing a series of mutant WbaP proteins and using them to complement O antigen synthesis in ΔwbaP mutants of S. enterica serovars Typhi and Typhimurium. Truncated forms of WbaP lacking the periplasmic loop exhibited altered chain-length distributions in O antigen polymerization, suggesting that this central domain is involved in modulating the chain-length distribution of the O polysaccharide. The N-terminal and periplasmic domains were dispensable for complementation of O antigen synthesis in vivo, suggesting that the C-terminal domain carries the sugar-phosphate transferase activity. However, despite the fact that they complemented the synthesis of O antigen in the ΔwbaP mutant in vivo, membrane extracts containing WbaP derivatives without the N-terminal domain failed to transfer radioactive Gal from UDP-Gal into a lipid-rich fraction. These results suggest that the N-terminal region of WbaP, which contains four transmembrane domains, is essential for the insertion or stability of the protein in the bacterial membrane. We propose that the domain structure of WbaP enables this protein not only to function in the transfer of Gal-1-P to Und-P but also to establish critical interactions with additional proteins required for the correct assembly of O antigen in S. enterica.
机译:WBAP是一种膜酶,通过将半乳糖1-磷酸盐(GAL-1-P)转移到未赤枝磷酸盐(UND-P)上,在沙门氏菌中引发抗原合成。 WBAP具有至少三个预测的结构结构域:含有四个跨膜螺旋,大中央周性环路和含有最后跨膜螺旋和大细胞质尾的C末端结构域的N-末端区域。在这项工作中,我们通过构建一系列突变的WBAP蛋白并使用它们来调查各个地区对WBAP功能的贡献,并使用它们在S.Stexica Serovars Typhi和Typhimurium的ΔWbap突变体中补充αWBAP突变体。缺乏周质环的截短形式的WBAP在抗原聚合中表现出改变的链长分布,表明该中心结构域参与调节O多糖的链长分布。 N-末端和周质域分配用于互溶于体内抗原合成的互补,表明C-末端结构域携带糖磷酸转移酶活性。然而,尽管它们具有在体内ΔWbap突变体中的Δwbap突变体中的合成的事实​​,但含有没有n末端结构域的Wbap衍生物的膜提取物未能将放射性加仑从UDP-gal转移成富含脂质的级分。这些结果表明,含有四个跨膜结构域的WBAP的N-末端区域对于细菌膜中蛋白质的插入或稳定性是必不可少的。我们提出WBAP的结构域结构使得该蛋白质不仅可以在GAL-1-P转移到und -p的转移中,而且还可以建立与S.肠溶酵母的O抗原的正确组装所需的额外蛋白质的关键相互作用。

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