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Characterization of the Caulobacter crescentus Holdfast Polysaccharide Biosynthesis Pathway Reveals Significant Redundancy in the Initiating Glycosyltransferase and Polymerase Steps▿

机译:Caulobacter crescentus坚韧多糖生物合成途径的表征揭示了起始糖基转移酶和聚合酶步骤中的显着冗余▿

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摘要

Caulobacter crescentus cells adhere to surfaces by using an extremely strong polar adhesin called the holdfast. The polysaccharide component of the holdfast is comprised in part of oligomers of N-acetylglucosamine. The genes involved in the export of the holdfast polysaccharide and the anchoring of the holdfast to the cell were previously discovered. In this study, we identified a cluster of polysaccharide biosynthesis genes (hfsEFGH) directly adjacent to the holdfast polysaccharide export genes. Sequence analysis indicated that these genes are involved in the biosynthesis of the minimum repeat unit of the holdfast polysaccharide. HfsE is predicted to be a UDP-sugar lipid-carrier transferase, the glycosyltransferase that catalyzes the first step in polysaccharide biosynthesis. HfsF is predicted to be a flippase, HfsG is a glycosyltransferase, and HfsH is similar to a polysaccharide (chitin) deacetylase. In-frame hfsG and hfsH deletion mutants resulted in severe deficiencies both in surface adhesion and in binding to the holdfast-specific lectin wheat germ agglutinin. In contrast, hfsE and hfsF mutants exhibited nearly wild-type levels of adhesion and holdfast synthesis. We identified three paralogs to hfsE, two of which are redundant to hfsE for holdfast synthesis. We also identified a redundant paralog to the hfsC gene, encoding the putative polysaccharide polymerase, and present evidence that the hfsE and hfsC paralogs, together with the hfs genes, are absolutely required for proper holdfast synthesis.
机译:新月形杆菌细胞通过使用一种极强的极性粘附素(称为“坚牢”)粘附在表面上。所述保持蛋白的多糖组分部分包含在N-乙酰氨基葡糖的低聚物中。先前发现了与保持性多糖的输出和保持性锚定锚定到细胞有关的基因。在这项研究中,我们确定了一组与紧迫多糖出口基因直接相邻的多糖生物合成基因(hfsEFGH)。序列分析表明,这些基因参与了固定多糖最小重复单元的生物合成。预计HfsE是UDP糖脂质载体转移酶,一种糖基转移酶,可催化多糖生物合成的第一步。预计HfsF是一种flippase,HfsG是一种糖基转移酶,并且HfsH与多糖(几丁质)脱乙酰基酶相似。框内的hfsG和hfsH缺失突变体导致表面黏附和与保持力特异性凝集素小麦胚芽凝集素的结合都严重不足。相反,hfsE和hfsF突变体表现出接近野生型的粘附水平和快速合成。我们确定了hfsE的三个旁系同源物,其中两个对于hfsE来说对于保持快速合成是多余的。我们还确定了编码假定的多糖聚合酶的hfsC基因的冗余旁系同源物,并提供了证据,证明hfsE和hfsC旁系同源物以及hfs基因绝对是正确保持快速合成所必需的。

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