首页> 美国卫生研究院文献>Journal of Bacteriology >Functional Characterization and Membrane Topology of Escherichia coli WecA a Sugar-Phosphate Transferase Initiating the Biosynthesis of Enterobacterial Common Antigen and O-Antigen Lipopolysaccharide
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Functional Characterization and Membrane Topology of Escherichia coli WecA a Sugar-Phosphate Transferase Initiating the Biosynthesis of Enterobacterial Common Antigen and O-Antigen Lipopolysaccharide

机译:大肠杆菌WecA的功能表征和膜拓扑结构一种糖磷酸转移酶可启动肠细菌常见抗原和O抗原脂多糖的生物合成

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摘要

WecA is an integral membrane protein that initiates the biosynthesis of enterobacterial common antigen and O-antigen lipopolysaccharide (LPS) by catalyzing the transfer of N-acetylglucosamine (GlcNAc)-1-phosphate onto undecaprenyl phosphate (Und-P) to form Und-P-P-GlcNAc. WecA belongs to a large family of eukaryotic and prokaryotic prenyl sugar transferases. Conserved aspartic acids in putative cytoplasmic loops 2 (Asp90 and Asp91) and 3 (Asp156 and Asp159) were targeted for replacement mutagenesis with either glutamic acid or asparagine. We examined the ability of each mutant protein to complement O-antigen LPS synthesis in a wecA-deficient strain and also determined the steady-state kinetic parameters of the mutant proteins in an in vitro transfer assay. Apparent Km and Vmax values for UDP-GlcNAc, Mg2+, and Mn2+ suggest that Asp156 is required for catalysis, while Asp91 appears to interact preferentially with Mg2+, possibly playing a role in orienting the substrates. Topological analysis using the substituted cysteine accessibility method demonstrated the cytosolic location of Asp90, Asp91, and Asp156 and provided a more refined overall topological map of WecA. Also, we show that cells expressing a WecA derivative C terminally fused with the green fluorescent protein exhibited a punctate distribution of fluorescence on the bacterial surface, suggesting that WecA localizes to discrete regions in the bacterial plasma membrane.
机译:WecA是一种完整的膜蛋白,可通过催化N-乙酰氨基葡萄糖(GlcNAc)-1-磷酸转移到十一碳烯基磷酸(Und-P)上形成Und-PP,从而启动肠细菌共同抗原和O抗原脂多糖(LPS)的生物合成。 -GlcNAc。 WecA属于一个大的真核和原核异戊二烯糖转移酶家族。假定的细胞质环2(Asp90和Asp91)和3(Asp156和Asp159)中保守的天冬氨酸被靶向用谷氨酸或天冬酰胺替代诱变。我们检查了每种突变蛋白在wecA缺陷型菌株中补充O抗原LPS合成的能力,并在体外转移测定中确定了突变蛋白的稳态动力学参数。 UDP-GlcNAc,Mg 2 + 和Mn 2 + 的表观Km和Vmax值表明,催化需要Asp156,而Asp91似乎优先与Mg 2 + ,可能在确定基板方向时起作用。使用取代的半胱氨酸可及性方法的拓扑分析显示了Asp90,Asp91和Asp156的胞质位置,并提供了更精确的WecA总体拓扑图。此外,我们表明表达与绿色荧光蛋白末端融合的WecA衍生物C的细胞在细菌表面上显示出荧光的点状分布,这表明WecA定位于细菌质膜的离散区域。

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