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Concanavalin-a-mediated thymocyte agglutination: a model for a quantitative study of cell adhesion

刀豆蛋白A 凝集(生物学) 凝集素 生物 生物物理学 细胞粘附 粘附 胸腺细胞 叠氮化钠 细胞粘附分子 离心 细胞 分子生物学 生物化学 体外 细胞生物学 免疫学 T细胞 化学 抗原 免疫系统 有机化学
作者
Christian Capo,Françoise Garrouste,Anne‐Marie Benoliel,Pierre Bongrand,A Ryter,George I. Bell
出处
期刊:Journal of Cell Science [The Company of Biologists]
卷期号:56 (1): 21-48 被引量:73
标识
DOI:10.1242/jcs.56.1.21
摘要

ABSTRACT This report describes a quantitative study of the agglutination of rat thymocytes with concanavalin A (ConA). The probability that two ConA-coated cells remain bound after centrifugation was determined over a wide range of lectin concentrations. The minimal force required to separate agglutinated cells and the number of ConA molecules bound per cell were measured in similar experimental conditions. Agglutinated cells were examined by electron microscopy to estimate the area of membrane involved in adhesion. The dependence of agglutination on cell metabolism was studied: cold (4 °C), sodium azide (15 mM) and cytochalasin B (10μg/ml) inhibited thymocyte adhesion. The importance of lateral movements of ConA molecules was assayed by measuring the adhesion of ConA-coated glutaraldehyde-fixed thymocytes to untreated cells: substantial binding occurred, but at a reduced level relative to untreated cells. A mathematical analysis of experimental data allowed the following conclusions. At least 103 ConA bonds were involved in cross-linking two bound cells, which required the lectin molecules to be concentrated in the binding area, at least when low ConA concentrations (0·5 μg/ml or less) were used.The dependence of the binding probability on lectin concentration was fairly linear when the latter was small, which implied that the limiting step in cell-cell adhesion was the formation of a bond between a single ConA molecule and a ligand on the other cell.The mean intercellular-contact time for the formation of this first bond was about 10 s for high concentrations of ligand (8 μg/ml). It was possible to fit the above data into a physically consistent quantitative model of cell adhesion.

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