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Low affinity interaction of human or rat T cell adhesion molecule CD2 with its ligand aligns adhering membranes to achieve high physiological affinity.

机译:人或大鼠T细胞粘附分子CD2与它的配体的低亲和力相互作用会使粘附的膜对齐,从而获得较高的生理亲和力。

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摘要

The mechanism by which low affinity adhesion molecules function to produce stable cell-cell adhesion is unknown. In solution, the interaction of human CD2 with its ligand CD58 is of low affinity (500 mM-1) and the interaction of rat CD2 with its ligand CD48 is of still lower affinity (40 mM-1). At the molecular level, however, the two systems are likely to be topologically identical. Fluorescently labeled glycosylphosphatidylinositol-anchored CD48 and CD58 were prepared and incorporated into supported phospholipid bilayers, in which the ligands were capable of free lateral diffusion. Quantitative fluorescence imaging was used to study the binding of cell surface human and rat CD2 molecules to the fluorescent ligands in contact areas between Jurkat cells and the bilayers. These studies provide two major conclusions. First, CD2/ligand interactions cooperate to align membranes with nanometer precision leading to a physiologically effective two-dimensional affinity. This process does not require the intact cytoplasmic tail of CD2. Second, the degree of membrane alignment that can be achieved by topologically similar receptors deteriorates with decreasing affinity. This suggests an affinity limit for the ability of this mode of cooperativity to achieve stable cell-cell adhesion at approximately 10 mM-1.
机译:低亲和力粘附分子起作用以产生稳定的细胞-细胞粘附的机制尚不清楚。在溶液中,人CD2与其配体CD58的相互作用具有较低的亲和力(500 mM-1),而大鼠CD2与其配体CD48的相互作用具有较低的亲和力(40 mM-1)。但是,在分子水平上,两个系统的拓扑结构可能相同。制备了荧光标记的糖基磷脂酰肌醇固定的CD48和CD58,并将其掺入支持的磷脂双层中,其中配体能够自由地横向扩散。定量荧光成像用于研究细胞表面的人和大鼠CD2分子与Jurkat细胞与双层分子接触区域中的荧光配体的结合。这些研究提供两个主要结论。首先,CD2 /配体相互作用以纳米精度协作排列膜,从而产生生理有效的二维亲和力。此过程不需要完整的CD2细胞质尾巴。第二,拓扑相似的受体可以实现的膜排列程度随着亲和力的降低而恶化。这表明对这种合作模式在大约10 mM-1处实现稳定的细胞间粘附能力的亲和力极限。

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