Larsen N E, Sullivan R
Proc Natl Acad Sci U S A. 1984 Jun;81(11):3491-5. doi: 10.1073/pnas.81.11.3491.
Salmonella typhi endotoxin (lipopolysaccharide, LPS) was labeled with tritium and purified by gel filtration. Using this preparation, we found that binding of 3H-labeled LPS (3H-LPS) to isolated human monocytes consisted of a rapid (t1/2 less than 5 min), reversible, temperature-independent phase of surface adsorption that was followed by a slower (t1/2 greater than 20 min) period of binding that was irreversible and temperature-dependent. The interactions between 3H-LPS and monocytes that we measured were dependent both on the concentration of LPS and the cell number. We observed an apparent decrease in 3H-LPS surface binding after initial treatment of the cells with LPS, which was most likely due to an acquired reduction in the number of sites on the monocyte membrane available for the binding of LPS. Estimates of the parameters of the binding of 3H-LPS were calculated from a double-reciprocal plot (1/bound vs. 1/free) of the surface binding data and suggest that the relative binding affinity (Kd) for 3H-LPS was unchanged after pretreatment of the monocytes with LPS; however, the total number of LPS binding sites appeared to be reduced by this manipulation. The results of competition binding experiments also suggest that the binding affinity for 3H-LPS was the same before and after incubation of the cells with LPS. Lipid A, which we extracted from LPS and labeled with chromium-51, exhibited a binding affinity similar to that of 3H-LPS and, like 3H-LPS, could be displaced from the cells by competing concentrations of unfractionated LPS; however, the kinetics of binding of the two labeled ligands differed considerably. Our results suggest that exposure of monocytes to LPS may alter the ability of these cells to interact with, and consequently respond to, LPS.
伤寒沙门氏菌内毒素(脂多糖,LPS)用氚标记并通过凝胶过滤纯化。使用该制剂,我们发现3H标记的LPS(3H-LPS)与分离的人单核细胞的结合包括快速(t1/2小于5分钟)、可逆、与温度无关的表面吸附阶段,随后是较慢(t1/2大于20分钟)的不可逆且与温度相关的结合阶段。我们测量的3H-LPS与单核细胞之间的相互作用既取决于LPS的浓度,也取决于细胞数量。在用LPS初始处理细胞后,我们观察到3H-LPS表面结合明显减少,这很可能是由于单核细胞膜上可用于LPS结合的位点数量获得性减少所致。从表面结合数据的双倒数图(1/结合量对1/游离量)计算出3H-LPS结合参数的估计值,表明在用LPS预处理单核细胞后,其对3H-LPS的相对结合亲和力(Kd)未改变;然而,这种操作似乎使LPS结合位点的总数减少了。竞争结合实验的结果还表明,在用LPS孵育细胞前后,其对3H-LPS的结合亲和力相同。我们从LPS中提取并用铬-51标记的脂质A表现出与3H-LPS相似的结合亲和力,并且与3H-LPS一样,可以被不同浓度的未分级LPS竞争取代;然而,两种标记配体的结合动力学有很大差异。我们的结果表明,单核细胞暴露于LPS可能会改变这些细胞与LPS相互作用并因此对其作出反应的能力。