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抗CD3抗体与Jurkat细胞的二价结合诱导T细胞受体复合物与细胞骨架的缔合。

Bivalent binding of an anti-CD3 antibody to Jurkat cells induces association of the T cell receptor complex with the cytoskeleton.

作者信息

Marano N, Holowka D, Baird B

机构信息

Department of Chemistry, Cornell University, Ithaca, NY 14853.

出版信息

J Immunol. 1989 Aug 1;143(3):931-8.

PMID:2787352
Abstract

Ligand binding and cross-linking of TCR/CD3 complex leads to T cell stimulation in immunologic responses. As a prelude to investigating the dynamic interactions of these receptors, we have characterized binding of the mAb OKT3 specific for CD3 on Jurkat cells. The association of both OKT3 and its Fab' fragment is rapid at 4 degrees C, and dissociation of Fab' is also rapid, but dissociation of OKT3 is slow, indicating bivalent binding in this case. Dissociation of OKT3 is substantially accelerated at 37 degrees C if internalization is prevented. From the concentration dependence, the binding of OKT3 at 4 degrees C appears to be very tight whereas binding of the Fab' fragment is weaker and biphasic. Scatchard analysis of the Fab' equilibrium binding data indicates two binding sites with KD values of 5.1 x 10(-9) M and 2.7 x 10(-8) M. The very tight binding of the bivalent antibody may be caused by inter- or intramolecular cross-linking between these sites. If Jurkat cells are warmed to 37 degrees C, there is an energy-dependent increase by about one-third of sites bound by OKT3 or its Fab' fragment over that seen at 4 degrees C. This increase may be related to a receptor recycling process because internalization of a similar number of the bound ligands occurs at similar rates. Other experiments have revealed that OKT3, but not its Fab' fragment, causes the receptor complex to become associated with the detergent-insoluble cytoskeleton, and there are also insoluble intracellular OKT3-binding sites. These cross-linking-induced receptor-cytoskeletal interactions are sensitive to moderate changes in salt concentration that should allow their molecular basis to be investigated.

摘要

在免疫反应中,配体与TCR/CD3复合物的结合及交联会导致T细胞活化。作为研究这些受体动态相互作用的前奏,我们已对Jurkat细胞上CD3特异性单克隆抗体OKT3的结合特性进行了表征。OKT3及其Fab'片段在4℃时的结合迅速,Fab'片段的解离也很快,但OKT3的解离缓慢,表明在此情况下存在二价结合。如果阻止内化,OKT3在37℃时的解离会显著加速。从浓度依赖性来看,OKT3在4℃时的结合似乎非常紧密,而Fab'片段的结合较弱且呈双相性。对Fab'平衡结合数据进行Scatchard分析表明存在两个结合位点,其KD值分别为5.1×10⁻⁹M和2.7×10⁻⁸M。二价抗体的紧密结合可能是由这些位点之间的分子间或分子内交联引起的。如果将Jurkat细胞升温至37℃,与4℃时相比,OKT3或其Fab'片段结合的位点数量会有能量依赖性增加,增加幅度约为三分之一。这种增加可能与受体循环过程有关,因为相似数量的结合配体以内化的相似速率发生内化。其他实验表明,OKT3而非其Fab'片段会使受体复合物与去污剂不溶性细胞骨架结合,并且还存在细胞内不溶性OKT3结合位点。这些交联诱导的受体 - 细胞骨架相互作用对盐浓度的适度变化敏感,这应该有助于对其分子基础进行研究。

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