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首页> 外文期刊>The Journal of Experomental Medicine >Low and high affinity cellular receptors for interleukin 2. Implications for the level of Tac antigen.
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Low and high affinity cellular receptors for interleukin 2. Implications for the level of Tac antigen.

机译:白介素2的低和高亲和力细胞受体。对Tac抗原水平的影响。

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摘要

Interleukin 2 promotes proliferation of T cells by virtue of its interaction with a high-affinity cell surface receptor. This receptor is a 55,000 mol wt glycoprotein that is also recognized by the murine monoclonal antibody, anti-Tac. Quantitative binding studies with radiolabeled IL-2 and anti-Tac, however, initially indicated far more antibody binding sites per cell than IL-2 binding sites. Extension of the IL-2 binding analysis to concentrations several thousand-fold higher than that necessary for the T cell proliferative response demonstrated the existence of a class (or classes) of low-affinity IL-2 binding sites. Inclusion of the low-affinity IL-2 binding greatly reduced the quantitative discrepancy in the ligand binding assays. That the low-affinity binding, as well as the high-affinity interaction, was associated with the Tac molecule was indicated by the finding that the antibody could substantially or totally block the entire spectrum of IL-2 binding and by the finding that IL-2 could in turn block all radiolabeled anti-Tac binding. The low-affinity sites were found on activated T cells, several human and murine T cell lines and two examples of Tac-positive B cells. The physiological role of the low-affinity IL-2 binding sites and the molecular changes in the Tac protein that give rise to the affinity differences remain open to investigation.
机译:白介素2由于其与高亲和力细胞表面受体的相互作用而促进了T细胞的增殖。该受体是一种55,000 mol wt的糖蛋白,也被鼠类单克隆抗体抗Tac识别。但是,最初用放射性标记的IL-2和抗Tac进行的定量结合研究表明,每个细胞的抗体结合位点远多于IL-2结合位点。将IL-2结合分析扩展到比T细胞增殖反应所需的浓度高数千倍的浓度,证明存在一类(或几类)低亲和力的IL-2结合位点。包含低亲和力的IL-2结合大大降低了配体结合测定中的定量差异。 Tac分子与低亲和力结合以及高亲和力相互作用有关,这是由于发现该抗体可以基本上或完全阻断IL-2结合的整个光谱,以及通过发现IL- 2反过来又可以阻断所有放射性标记的抗Tac结合。在活化的T细胞,几种人和鼠T细胞系以及Tac阳性B细胞的两个实例中发现了低亲和力位点。低亲和力IL-2结合位点的生理作用和Tac蛋白质中引起亲和力差异的分子变化仍然有待研究。

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