首页> 外文期刊>European Biophysics Journal >CHARACTERISATION OF THE LOW AFFINITY INTERACTION BETWEEN RAT CELL ADHESION MOLECULES CD2 AND CD48 BY ANALYTICAL ULTRACENTRIFUGATION
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CHARACTERISATION OF THE LOW AFFINITY INTERACTION BETWEEN RAT CELL ADHESION MOLECULES CD2 AND CD48 BY ANALYTICAL ULTRACENTRIFUGATION

机译:解析超声分析法鉴定大鼠细胞粘附分子CD2和CD48之间的低亲和力相互作用

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摘要

CD2 is a cell adhesion molecule found on the plasma membrane of T-lymphocytes. Its counter-receptor in rat is the structurally related CD48. This interaction is believed to contribute to the adhesion of T-cells to other cells such as cytotoxic targets and antigen presenting cells. Cell-cell adhesion involves the formation of multiple cell adhesion molecule complexes at the cell surface and if cell-cell de-adhesion is to occur, these complexes need to be disrupted. The affinities of cell adhesion molecule interactions are suggested to be relatively weak to allow this de-adhesion of cell-cell interactions. The CD2/CD48 interaction has been studied using recombinant extracellular proteins and the affinity of the interaction of soluble recombinant rat CD2-CD48 has been determined (at 37 degrees C) using surface plasmon resonance (and shown to be weak), with the dissociation constant K-d = 60-90 mu M. The values determined by surface plasmon resonance results could be affected by the immobilisation of the ligand on the chip and any self-association on the chip. We used three different analytical ultracentrifuge procedures which each allowed the interaction to be studied in free solution without the need for an immobilisation medium. Both sedimentation equilibrium (using direct analysis of the concentration distribution and also modelling of molecular weight versus concentration data) and sedimentation velocity at 5 degrees C yielded dissociation constants in the range of 20-110 mu M, supporting the surface plasmon resonance findings showing that binding between these cell adhesion molecules is relatively weak. These studies also ruled out the presence of any significant self-association of the reactants which could lead to systematic error in the surface plasmon resonance results. [References: 33]
机译:CD2是在T淋巴细胞质膜上发现的细胞粘附分子。它在大鼠中的反受体是结构相关的CD48。据信这种相互作用有助于T细胞与其他细胞如细胞毒性靶标和抗原呈递细胞的粘附。细胞-细胞粘附涉及在细胞表面上形成多个细胞粘附分子复合物,并且如果要发生细胞-细胞脱粘附,则需要破坏这些复合物。建议细胞粘附分子相互作用的亲和力相对较弱,以允许细胞-细胞相互作用的这种去粘附。已经使用重组细胞外蛋白研究了CD2 / CD48的相互作用,并使用表面等离振子共振(显示弱)确定了可溶性重组大鼠CD2-CD48的相互作用的亲和力(在37摄氏度下),并且具有解离常数Kd = 60-90μM。由表面等离振子共振结果确定的值可能受配体在芯片上的固定以及芯片上任何自缔合的影响。我们使用了三种不同的分析超速离心程序,每种程序都可以在不需要固定介质的情况下在游离溶液中研究相互作用。在5摄氏度下的沉降平衡(使用浓度分布的直接分析以及分子量与浓度数据的建模)和沉降速度都可产生20-110μM的解离常数,这表明表面等离振子共振的结果表明结合这些细胞之间的粘附分子之间相对较弱。这些研究还排除了反应物的任何显着自缔合的存在,这可能导致表面等离振子共振结果的系统误差。 [参考:33]

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