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CD2与淋巴细胞功能相关抗原-3(LFA-3)相互作用的可视化以及接触区域中粘附受体二维解离常数的测定。

Visualization of CD2 interaction with LFA-3 and determination of the two-dimensional dissociation constant for adhesion receptors in a contact area.

作者信息

Dustin M L, Ferguson L M, Chan P Y, Springer T A, Golan D E

机构信息

Center for Immunology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Cell Biol. 1996 Feb;132(3):465-74. doi: 10.1083/jcb.132.3.465.

Abstract

Many adhesion receptors have high three-dimensional dissociation constants (Kd) for counter-receptors compared to the KdS of receptors for soluble extracellular ligands such as cytokines and hormones. Interaction of the T lymphocyte adhesion receptor CD2 with its counter-receptor, LFA-3, has a high solution-phase Kd (16 microM at 37 degrees C), yet the CD2/LFA-3 interaction serves as an effective adhesion mechanism. We have studied the interaction of CD2 with LFA-3 in the contact area between Jurkat T lymphoblasts and planar phospholipid bilayers containing purified, fluorescently labeled LFA-3. Redistribution and lateral mobility of LFA-3 were measured in contact areas as functions of the initial LFA-3 surface density and of time after contact of the cells with the bilayers. LFA-3 accumulated at sites of contact with a half-time of approximately 15 min, consistent with the previously determined kinetics of adhesion strengthening. The two-dimensional Kd for the CD2/LFA-3 interaction was 21 molecules/microns 2, which is lower than the surface densities of CD2 on T cells and LFA-3 on most target or stimulator cells. Thus, formation of CD2/LFA-3 complexes should be highly favored in physiological interactions. Comparison of the two-dimensional (membrane-bound) and three-dimensional (solution-phase) KdS suggest that cell-cell contact favors CD2/LFA-3 interaction to a greater extent than that predicted by the three-dimensional Kd and the intermembrane distance at the site of contact. LFA-3 molecules in the contact site were capable of lateral diffusion in the plane of the phospholipid bilayer and did not appear to be irreversibly trapped in the contact area, consistent with a rapid off-rate. These data provide insights into the function of low affinity interactions in adhesion.

摘要

与细胞因子和激素等可溶性细胞外配体的受体的解离常数(Kd)相比,许多黏附受体与其反受体的三维解离常数(Kd)较高。T淋巴细胞黏附受体CD2与其反受体LFA-3的相互作用在溶液相中的Kd较高(37℃时为16μM),但CD2/LFA-3相互作用却是一种有效的黏附机制。我们研究了Jurkat T淋巴母细胞与含有纯化的、荧光标记的LFA-3的平面磷脂双层之间接触区域中CD2与LFA-3的相互作用。在接触区域中测量了LFA-3的重新分布和横向迁移率,它们是初始LFA-3表面密度以及细胞与双层接触后时间的函数。LFA-3在接触位点积累,半衰期约为15分钟,这与先前确定的黏附增强动力学一致。CD2/LFA-3相互作用的二维Kd为21个分子/μm²,低于T细胞上CD2以及大多数靶细胞或刺激细胞上LFA-3的表面密度。因此,在生理相互作用中,CD2/LFA-3复合物的形成应该非常有利。二维(膜结合)和三维(溶液相)Kd的比较表明,细胞间接触对CD2/LFA-3相互作用的促进程度大于三维Kd和接触位点处膜间距离所预测的程度。接触位点处的LFA-3分子能够在磷脂双层平面内横向扩散,并且似乎没有不可逆地被困在接触区域,这与快速解离速率一致。这些数据为低亲和力相互作用在黏附中的功能提供了见解。

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