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Another brick in the wall: a rhamnan polysaccharide trapped inside peptidoglycan of Lactococcus lactis

机译:墙上的另一块砖头:鼠李糖乳球菌肽聚糖内的鼠李糖多糖

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摘要

Polysaccharides are ubiquitous components of the Gram-positive bacterial cell wall. In Lactococcus lactis, a polysaccharide pellicle (PSP) forms a layer at the cell surface. The PSP structure varies among lactococcal strains; in L. lactis MG1363, the PSP is composed of repeating hexasaccharide phosphate units. Here, we report the presence of an additional neutral polysaccharide in L. lactis MG1363 that is a rhamnan composed of α-L-Rha trisaccharide repeating units. This rhamnan is still present in mutants devoid of the PSP, indicating that its synthesis can occur independently of PSP synthesis. High-resolution magic-angle spinning nuclear magnetic resonance (HR-MAS NMR) analysis of whole bacterial cells identified a PSP at the surface of wild-type cells. In contrast, rhamnan was detected only at the surface of PSP-negative mutant cells, indicating that rhamnan is located underneath the surface-exposed PSP and is trapped inside peptidoglycan. The genetic determinants of rhamnan biosynthesis appear to be within the same genetic locus that encodes the PSP biosynthetic machinery, except the gene tagO encoding the initiating glycosyltransferase. We present a model of rhamnan biosynthesis based on an ABC transporter-dependent pathway. Conditional mutants producing reduced amounts of rhamnan exhibit strong morphological defects and impaired division, indicating that rhamnan is essential for normal growth and division. Finally, a mutation leading to reduced expression of lcpA, encoding a protein of the LytR-CpsA-Psr (LCP) family, was shown to severely affect cell wall structure. In lcpA mutant cells, in contrast to wild-type cells, rhamnan was detected by HR-MAS NMR, suggesting that LcpA participates in the attachment of rhamnan to peptidoglycan.
机译:多糖是革兰氏阳性细菌细胞壁的普遍成分。在乳酸乳球菌中,多糖薄膜(PSP)在细胞表面形成一层。 PSP结构在乳球菌菌株之间有所不同。在乳酸乳球菌MG1363中,PSP由重复的六糖磷酸酯单元组成。在这里,我们报告在乳酸乳球菌MG1363中存在其他中性多糖,这是由α-L-Rha三糖重复单元组成的鼠李糖。该鼠李聚糖仍存在于不含PSP的突变体中,表明其合成可以独立于PSP合成而发生。整个细菌细胞的高分辨率魔角旋转核磁共振(HR-MAS NMR)分析在野生型细胞表面鉴定出PSP。相反,仅在PSP阴性突变细胞的表面检测到鼠李聚糖,表明鼠李聚糖位于暴露于表面的PSP之下,并被困在肽聚糖内部。鼠李糖聚糖生物合成的遗传决定因素似乎在编码PSP生物合成机制的相同遗传位点内,但编码起始糖基转移酶的基因tagO除外。我们提出了基于ABC转运蛋白依赖途径的鼠李糖脂生物合成模型。产生数量减少的鼠李聚糖的条件突变体表现出强烈的形态学缺陷和受损的分裂,表明鼠李聚糖是正常生长和分裂所必需的。最后,显示了导致导致lcpA减少表达的突变,该突变编码LytR-CpsA-Psr(LCP)家族的蛋白质,严重影响细胞壁结构。与野生型细胞相比,在lcpA突变细胞中,通过HR-MAS NMR检测到鼠李聚糖,这表明LcpA参与鼠李聚糖与肽聚糖的连接。

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