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白细胞介素2受体两种不同亲和状态的分子基础:亲和转换模型

Molecular basis for two different affinity states of the interleukin 2 receptor: affinity conversion model.

作者信息

Kondo S, Shimizu A, Saito Y, Kinoshita M, Honjo T

出版信息

Proc Natl Acad Sci U S A. 1986 Dec;83(23):9026-9. doi: 10.1073/pnas.83.23.9026.

Abstract

Two affinity species of the interleukin 2 (IL-2) receptor are different states of a single receptor molecule. We assumed that a binary complex between the IL-2 receptor and another lymphocyte-specific protein would constitute the high-affinity receptor. To test this assumption, we counted the numbers of IL-2 receptors with high and low affinity in a murine T-cell line CT/hR-1 that expresses not only murine but also human receptors by cDNA transfection. We found that human high-affinity receptors disappeared when the murine high-affinity receptors were already occupied by the ligand. The results were incompatible with a fixed number of human and murine receptors with high affinity in CT/hR-1 cells. We suggest that the high-affinity state of the IL-2 receptor is a ternary complex of IL-2, the IL-2 receptor, and a postulated "converter" protein, which is fewer in number than the receptors. The converter would be unable to form a complex with the IL-2 receptor unless IL-2 was already bound to it. The ligand binding to the receptor would cause a conformational change in the receptor, increasing its affinity to the converter. Ternary complex formation would, in turn, change the apparent affinity of the receptor to the ligand from low to high by reduction of the dissociation constant.

摘要

白细胞介素2(IL-2)受体的两种亲和性形式是单一受体分子的不同状态。我们假定IL-2受体与另一种淋巴细胞特异性蛋白之间的二元复合物构成高亲和性受体。为了验证这一假定,我们通过cDNA转染,对不仅表达鼠源受体而且表达人源受体的鼠T细胞系CT/hR-1中高亲和性和低亲和性IL-2受体的数量进行了计数。我们发现,当鼠源高亲和性受体已被配体占据时,人源高亲和性受体消失。这些结果与CT/hR-1细胞中固定数量的人源和鼠源高亲和性受体不相符。我们认为,IL-2受体的高亲和性状态是IL-2、IL-2受体和一种假定的“转换”蛋白形成的三元复合物,该“转换”蛋白的数量比受体少。除非IL-2已与之结合,否则转换蛋白无法与IL-2受体形成复合物。配体与受体的结合会导致受体构象改变,增加其对转换蛋白的亲和力。反过来,三元复合物的形成会通过降低解离常数,将受体对配体的表观亲和力从低变高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b88/387067/d97395577eb3/pnas00327-0217-a.jpg

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