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细菌肽聚糖的化学计量分析揭示了赋予细胞壁抵抗捕食性酶和蝇先天免疫的非典型修饰。

Chemometric Analysis of Bacterial Peptidoglycan Reveals Atypical Modifications That Empower the Cell Wall against Predatory Enzymes and Fly Innate Immunity.

机构信息

Laboratory for Molecular Infection Medicine Sweden, Department of Molecular Biology, Umeå Centre for Microbial Research, Umeå University , 90187 Umeå, Sweden.

Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Científicas , Ramiro de Maeztu 9, 28040 Madrid, Spain.

出版信息

J Am Chem Soc. 2016 Jul 27;138(29):9193-204. doi: 10.1021/jacs.6b04430. Epub 2016 Jul 13.

DOI:10.1021/jacs.6b04430
PMID:27337563
Abstract

Peptidoglycan is a fundamental structure for most bacteria. It contributes to the cell morphology and provides cell wall integrity against environmental insults. While several studies have reported a significant degree of variability in the chemical composition and organization of peptidoglycan in the domain Bacteria, the real diversity of this polymer is far from fully explored. This work exploits rapid ultraperformance liquid chromatography and multivariate data analysis to uncover peptidoglycan chemical diversity in the Class Alphaproteobacteria, a group of Gram negative bacteria that are highly heterogeneous in terms of metabolism, morphology and life-styles. Indeed, chemometric analyses revealed novel peptidoglycan structures conserved in Acetobacteria: amidation at the α-(l)-carboxyl of meso-diaminopimelic acid and the presence of muropeptides cross-linked by (1-3) l-Ala-d-(meso)-diaminopimelate cross-links. Both structures are growth-controlled modifications that influence sensitivity to Type VI secretion system peptidoglycan endopeptidases and recognition by the Drosophila innate immune system, suggesting relevant roles in the environmental adaptability of these bacteria. Collectively our findings demonstrate the discriminative power of chemometric tools on large cell wall-chromatographic data sets to discover novel peptidoglycan structural properties in bacteria.

摘要

肽聚糖是大多数细菌的基本结构。它有助于细胞形态,并为细胞壁的完整性提供抵御环境胁迫。尽管有几项研究报道了细菌域中肽聚糖的化学组成和结构具有显著的可变性,但这种聚合物的真正多样性还远未被充分探索。本研究利用快速超高效液相色谱和多元数据分析,揭示了α-变形菌纲(Alphaproteobacteria)中肽聚糖的化学多样性。α-变形菌纲是一类革兰氏阴性细菌,在代谢、形态和生活方式方面高度异质。事实上,化学计量分析揭示了醋杆菌中保守的新型肽聚糖结构:meso-二氨基庚二酸的α-(l)-羧基酰胺化和通过(1-3)l-Ala-d-(meso)-二氨基庚二酸交联的肽聚糖。这两种结构都是生长控制的修饰,影响对 VI 型分泌系统肽聚糖内切酶的敏感性和果蝇先天免疫系统的识别,表明它们在这些细菌的环境适应性中具有重要作用。总之,我们的研究结果表明,化学计量工具在大型细胞壁色谱数据集上具有区分能力,可用于发现细菌中新型肽聚糖结构特性。

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Chemometric Analysis of Bacterial Peptidoglycan Reveals Atypical Modifications That Empower the Cell Wall against Predatory Enzymes and Fly Innate Immunity.细菌肽聚糖的化学计量分析揭示了赋予细胞壁抵抗捕食性酶和蝇先天免疫的非典型修饰。
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