首页> 美国卫生研究院文献>Journal of Bacteriology >Membrane-associated nucleotide sugar reactions: influence of mutations affecting lipopolysaccharide on the first enzyme of O-antigen synthesis.
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Membrane-associated nucleotide sugar reactions: influence of mutations affecting lipopolysaccharide on the first enzyme of O-antigen synthesis.

机译:膜相关的核苷酸糖反应:影响脂多糖的突变对O抗原合成的第一个酶的影响。

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摘要

Both the synthesis of lipopolysaccharide O-antigen and the synthesis of peptidoglycan in Salmonella typhimurium proceed via membrane-bound glycosylated lipid intermediates. The first enzyme of each pathway transfers a sugar phosphate from a nucleotide sugar to the glycosyl carrier lipid (P-GCL). Each enzyme catalyzes an exchange reaction between the reaction product urine monophosphate, and the nucleotide sugar substrate. Several strains of S. typhimurium defective in lipopolysaccharide synthesis accumulate glycosylated lipid intermediates under appropriate conditions. In addition, strains lysogenic for phage P22 synthesize a glucose derivative of the carrier lipid. These strains were used to demonstrate the P/GCL requirement of the exchange reaction catalyzed by galactose-diphosphoglycosyl carrier lipid (GCL-PP-Gal) synthetase, the first enzyme of O-antigen synthesis. Enzyme activity is greatly reduced when glycosylated P-GCL accumulates on the cytoplasmic membrane. The exchange reaction catalyzed by the first enzyme of peptidoglycan synthesis is unaffected by the accumulation of O-antigen fragments on the carrier lipid and may interact with a different pool of P-GCL within the membrane. GCL-PP-Gal synthetase activity cannot be detected in the membranes of two rfa mutants that synthesize incomplete lipopolysaccharide core. Either the synthesis of GCL-PP-Gal synthetase or the stable integration of the enzyme into the membrane structure may be disrupted in the rfa mutants. Peptidoglycan synthesis is unaffected by the mutations affecting the core glycosyltransferases.
机译:鼠伤寒沙门氏菌中脂多糖O抗原的合成和肽聚糖的合成都是通过膜结合的糖基化脂质中间体进行的。每个途径的第一个酶将糖磷酸酯从核苷酸糖转移到糖基载体脂质(P-GCL)。每种酶催化反应产物尿单磷酸酯和核苷酸糖底物之间的交换反应。脂多糖合成中有缺陷的鼠伤寒沙门氏菌的几种菌株在适当条件下积累糖基化脂质中间体。另外,针对噬菌体P22的溶菌菌株合成了载体脂质的葡萄糖衍生物。这些菌株用于证明由半乳糖-二磷酸糖基载体脂质(GCL-PP-Gal)合成酶(O抗原合成的第一种酶)催化的交换反应的P / GCL要求。当糖基化的P-GCL堆积在细胞质膜上时,酶的活性会大大降低。肽聚糖合成的第一个酶催化的交换反应不受载体脂质上O抗原片段的积累的影响,并且可能与膜内不同的P-GCL池相互作用。 GCL-PP-Gal合成酶活性无法在两个不完整的脂多糖核心合成的rfa突变体的膜中检测到。在rfa突变体中,GCL-PP-Gal合成酶的合成或酶到膜结构的稳定整合都可能被破坏。肽聚糖的合成不受影响核心糖基转移酶的突变的影响。

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