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聚集的免疫球蛋白G与富含脂质A的细菌脂多糖的选择性结合。

The selective binding of aggregated IgG to lipid A-rich bacterial lipopolysaccharides.

作者信息

Ginsberg M H, Morrison D C

出版信息

J Immunol. 1978 Jan;120(1):317-9.

PMID:627721
Abstract

To explore the mechanism by which certain bacterial lipopolysaccharides (LPS) enhance platelet stimulation by aggregated IgG, we studied potential interactions between the two ligands. Lipid A or the lipid A-rich LPS from Salmonella minnesota R595 (LPS R595) selectively increased the sedimentation of aggregated rather than monomer IgG in sucrose density gradients. Insolubilized IgG aggregates adsorbed LPS R595 from solution. These two experiments suggested binding of IgG aggregates to LPS R595 or lipid A and this was confirmed by isopycnic density gradient ultracentrifugation studies. The presence of R595 LPS shifted the equilibrium density profile of aggregated IgG from its usual equilibrium density at 1.30 g/ml to a new position superimposable with that of the LPS R595. The possibility that a selective binding of IgG aggregates to LPS may represent a fundamental mechanism of the action of LPS on cellular mediation systems is proposed.

摘要

为了探究某些细菌脂多糖(LPS)增强聚集IgG对血小板刺激作用的机制,我们研究了这两种配体之间的潜在相互作用。来自明尼苏达沙门氏菌R595的脂质A或富含脂质A的LPS(LPS R595)在蔗糖密度梯度中选择性地增加了聚集IgG而非单体IgG的沉降。不溶性IgG聚集体从溶液中吸附LPS R595。这两个实验表明IgG聚集体与LPS R595或脂质A结合,等密度梯度超速离心研究证实了这一点。R595 LPS的存在使聚集IgG的平衡密度分布从其通常的1.30 g/ml平衡密度转移到与LPS R595的平衡密度分布重叠的新位置。有人提出,IgG聚集体与LPS的选择性结合可能代表了LPS对细胞介导系统作用的一种基本机制。

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