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细菌内毒素的化学结构与生物活性的关系。

The chemical structure of bacterial endotoxin in relation to bioactivity.

作者信息

Rietschel E T, Kirikae T, Schade F U, Ulmer A J, Holst O, Brade H, Schmidt G, Mamat U, Grimmecke H D, Kusumoto S

机构信息

Forschungsinstitut Borstel, Institut für Experimentelle Biologie und Medizin, Germany.

出版信息

Immunobiology. 1993 Apr;187(3-5):169-90. doi: 10.1016/S0171-2985(11)80338-4.

Abstract

Lipopolysaccharides (LPS) constitute the O-antigens and endotoxins of Gram-negative bacteria. Whereas both the polysaccharide and lipid portion of LPS contribute to the pathogenic potential of this class of bacteria, it is the lipid component (lipid A) which determines the endotoxic properties of LPS. The primary structure of lipid A of various bacterial origin has been elucidated and Escherichia coli lipid A has been chemically synthesized. The biological analysis of synthetic lipid A partial structures proved that the expression of endotoxic activity depends on a unique structural arrangement and conformation. Such analyses have furthermore provided insight into the determinants required for lipid A binding to and activation of human target cells. Present research efforts aim at the molecular characterization of the specificity, modulation and biomedical consequences of the interaction of lipid A with host cells.

摘要

脂多糖(LPS)构成革兰氏阴性菌的O抗原和内毒素。虽然LPS的多糖和脂质部分都对这类细菌的致病潜力有贡献,但决定LPS内毒素特性的是脂质成分(脂质A)。已阐明了各种细菌来源的脂质A的一级结构,并且已经化学合成了大肠杆菌脂质A。对合成脂质A部分结构的生物学分析证明,内毒素活性的表达取决于独特的结构排列和构象。此类分析还进一步深入了解了脂质A与人类靶细胞结合及激活所需的决定因素。目前的研究工作旨在对脂质A与宿主细胞相互作用的特异性、调节作用及生物医学后果进行分子表征。

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