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Synthesis and Functional Study of Bacterial Glycoconjugates Triggering the InnateImmune System of Higher Animals

机译:细菌糖缀合物触发高等动物先天免疫系统的合成及功能研究

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摘要

Typical bacterial glycoconjugates, lipopolysaccharide (LPS) and peptidoglycan (PGN), which ubiquitously occur in a wide range of bacterial cells as important components of their cell envelope, have long been known to enhance the immunological responses of higher animals. Synthetic works and related biological investigations on LPS are reviewed which were performed to understand the molecular basis of this phenomena mainly by the author's and collaborating groups. Structural study followed by chemical synthesis of glycolipid part of LPS, named lipid A, proved it to exhibit all the biological activity described for LPS. Synthetic homogeneous lipid A and its derivatives were utilized for precise studies of their biological functions and interaction with receptor proteins. Similar research on PGN led to conclude its minimum active structure as muramyl dipeptide. Chemical synthesis gave unequivocal evidences for the concept that definite small molecular parts of LPS and PGN are recognized by its specific receptors and trigger our defense system which is now recognized as innate immunity.
机译:众所周知,典型的细菌糖缀合物,脂多糖(LPS)和肽聚糖(PGN)作为细胞包膜的重要组成部分广泛存在于多种细菌细胞中,可增强高等动物的免疫反应。综述了有关脂多糖的合成研究和相关生物学研究,这些研究主要是由作者和协作组进行的,以了解这种现象的分子基础。结构研究,然后化学合成LPS的糖脂部分(称为脂质A),证明其具有LPS所述的所有生物活性。合成的均质脂质A及其衍生物用于精确研究其生物学功能以及与受体蛋白的相互作用。对PGN的类似研究得出的结论是,其最小活性结构为muramyl dieptide。化学合成为LPS和PGN的特定小分子部分被其特定受体识别并触发我们的防御系统(现在被认为是先天免疫)的概念提供了明确的证据。

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