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α链-白细胞介素-2复合物在白细胞介素-2与高亲和力白细胞介素-2受体三元复合物形成中的作用。

Role of alpha chain-IL-2 complex in the formation of the ternary complex of IL-2 and high-affinity IL-2 receptor.

作者信息

Kamio M, Uchiyama T, Arima N, Itoh K, Ishikawa T, Hori T, Uchino H

机构信息

First Division of Internal Medicine, Faculty of Medicine, Kyoto University, Japan.

出版信息

Int Immunol. 1990;2(6):521-30. doi: 10.1093/intimm/2.6.521.

Abstract

Using anti-Tac (anti-alpha chain) and 2R-B (anti-beta chain) antibodies, we studied the roles of IL-2 receptor subunits (alpha and beta chains) in the formation of IL-2 and high-affinity IL-2 receptor complex, which is the initial event of IL-2 induced T cell growth. High-affinity IL-2 binding which was undetectable in the presence of 2R-B antibody at 4 degrees C became fully detectable when examined at 37 degrees C, which explained the lack of inhibition by 2R-B antibody of IL-2-induced proliferation of the cells expressing high-affinity IL-2 receptor. We further studied the mechanism of the 'reappearance' of high-affinity IL-2 binding in the presence of 2R-B antibody. The addition of IL-2 to the cells preincubated with radiolabeled or fluorescence-labeled 2R-B antibody resulted in a marked decrease in the antibody bound to the cells expressing high-affinity IL-2 receptor at 37 degrees C. This decrease was blocked by the presence of anti-Tac antibody, which inhibited IL-2 binding to alpha chain, but not by 7G7/B6 antibody, which recognized a non-IL-2 binding site of its chain. Furthermore, the decrease in cell-bound 2R-B antibody was not due to the internalization of beta chain-2R-B antibody complex, because the amount of cell-bound Mik-beta3 antibody recognizing a non-IL-2 binding epitope of beta chain remained unchanged, nor to the inhibition by simple competitive binding of IL-2 molecules to beta chain as judged from comparative studies of competitive binding inhibition. Taking these data together, the reappearance of high-affinity IL-2 binding was considered to be caused by the replacement of 2R-B antibody at the IL-2 binding site of beta chain by alpha chain-mediated IL-2, and it was strongly suggested that alpha chain-IL-2 complex has a key role in the formation of the ternary complex of IL-2 and high-affinity IL-2 receptor. alpha chain may function as a dimension converter of IL-2 to effectively deliver IL-2 molecules to a relatively small number of beta chains in the dynamics of the formation of high-affinity IL-2 binding in T cells.

摘要

我们使用抗 Tac(抗α链)抗体和 2R - B(抗β链)抗体,研究了白细胞介素 - 2(IL - 2)受体亚基(α链和β链)在 IL - 2 及高亲和力 IL - 2 受体复合物形成中的作用,这是 IL - 2 诱导 T 细胞生长的起始事件。在 4℃时,2R - B 抗体存在下无法检测到高亲和力的 IL - 2 结合,但在 37℃检测时则可完全检测到,这解释了 2R - B 抗体为何不抑制表达高亲和力 IL - 2 受体的细胞的 IL - 2 诱导增殖。我们进一步研究了在 2R - B 抗体存在下高亲和力 IL - 2 结合“重现”的机制。将 IL - 2 添加到预先用放射性标记或荧光标记的 2R - B 抗体孵育的细胞中,导致在 37℃时与表达高亲和力 IL - 2 受体的细胞结合的抗体显著减少。这种减少被抗 Tac 抗体阻断,抗 Tac 抗体抑制 IL - 2 与α链结合,但不被识别其链上非 IL - 2 结合位点的 7G7/B6 抗体阻断。此外,细胞结合的 2R - B 抗体减少并非由于β链 - 2R - B 抗体复合物的内化,因为识别β链非 IL - 2 结合表位的细胞结合的 Mik - β3 抗体量保持不变,也不是由于 IL - 2 分子与β链的简单竞争性结合抑制,这是通过竞争性结合抑制的比较研究判断的。综合这些数据,高亲和力 IL - 2 结合的重现被认为是由α链介导的 IL - 2 在β链的 IL - 2 结合位点取代 2R - B 抗体所致,并且强烈提示α链 - IL - 2 复合物在 IL - 2 与高亲和力 IL - 2 受体三元复合物的形成中起关键作用。在 T 细胞中高亲和力 IL - 2 结合形成的动态过程中,α链可能作为 IL - 2 的尺寸转换器,有效地将 IL - 2 分子传递给相对少量的β链。

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