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关于内毒素构象的一个实例。

A case for an endotoxic conformation.

作者信息

Seydel U, Brandenburg K, Rietschel E T

机构信息

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

出版信息

Prog Clin Biol Res. 1994;388:17-30.

PMID:7831357
Abstract

Gram-negative bacteria express on their surface endotoxins which are essential for bacterial growth and survival. If released from the bacterial cell, endotoxins induce, in higher organisms, a variety of pathophysiological effects known as manifestations of bacterial sepsis. Chemically, endotoxins are lipopolysaccharides (LPS) composed of a polysaccharide and a lipid component, termed lipid A, which is responsible for the induction of endotoxin effects. Lipid A of all endotoxically active LPS have a similar architecture. The structural and conformational parameters endowing lipid A with its potent bioactivity have been well characterized. The toxic effects of endotoxins or their lipid A component, respectively, are initiated by the specific interaction of lipid A with macrophages/monocytes resulting in the production of peptide or lipid mediators like tumor necrosis factor alpha (TNF), the leukotrienes, and oxygen radicals. This interaction requires a unique "endotoxic conformation" of lipid A on the one hand, and specific cellular receptors on the other. The interaction and subsequent mediator production can be specifically and antagonistically inhibited by lipid A partial structures.

摘要

革兰氏阴性菌在其表面表达内毒素,内毒素对细菌的生长和存活至关重要。如果内毒素从细菌细胞中释放出来,在高等生物中会诱发多种病理生理效应,即所谓的细菌败血症表现。从化学角度来看,内毒素是由多糖和脂质成分(称为脂质A)组成的脂多糖,脂质A负责引发内毒素效应。所有具有内毒素活性的脂多糖的脂质A都有相似的结构。赋予脂质A强大生物活性的结构和构象参数已得到充分表征。内毒素或其脂质A成分的毒性作用分别是由脂质A与巨噬细胞/单核细胞的特异性相互作用引发的,导致产生肽或脂质介质,如肿瘤坏死因子α(TNF)、白三烯和氧自由基。这种相互作用一方面需要脂质A具有独特的“内毒素构象”,另一方面需要特定的细胞受体。脂质A的部分结构可以特异性地、拮抗地抑制这种相互作用和随后的介质产生。

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