Ogura T, Konishi M, Suzuki N, Kondo S, Sabe H, Honjo T
Department of Medical Chemistry, Kyoto University Faculty of Medicine, Japan.
Mol Biol Med. 1988 Apr;5(2):123-38.
Interleukin 2 (IL-2) binds to its receptors with three distinct affinities, with Kd values of 10(-11) M (high), 10(-9) M (intermediate) and 10(-8) M (low). IL-2 responding cells express two proteins that bind IL-2, i.e. a 55 x 10(3) Mr protein (p55 or L chain), which has classically been known as the IL-2 receptor and a second 75 x 10(3) Mr chain (p75 or H chain) with intermediate affinity. Experiments were performed to clarify the mechanism of the high-affinity site formation. Crosslinking of human IL-2 with the high-affinity sites of human T lymphocytes yielded a 150 x 10(3) Mr ternary complex consisting of IL-2, L and H chains. The ternary complex with human IL-2 was formed on EL/Tac 3 cells expressing human L and murine H chains, although human IL-2 was unable to bind to the parental EL-4 cell, which does not express human L chain. The high-affinity ternary complex was stable during solubilization and fractionated by gel-filtration chromatography, and the numbers of these complexes were quantified by this method. The number of high-affinity sites on the CT/hR-1 cells, which express the human L, murine L and murine H chains, was almost constant even when either the human or murine L chain was blocked by specific antibodies in agreement with a previous observation. These results indicate that the L and H chains do not form a stable binary complex by themselves and that IL-2 binding induces the formation of the stable high-affinity ternary complex.
白细胞介素2(IL-2)以三种不同的亲和力与其受体结合,解离常数(Kd)值分别为10^(-11) M(高亲和力)、10^(-9) M(中等亲和力)和10^(-8) M(低亲和力)。对IL-2产生应答的细胞表达两种能结合IL-2的蛋白质,即一种55×10^3道尔顿的蛋白质(p55或轻链),传统上它被认为是IL-2受体,以及第二种具有中等亲和力的75×10^3道尔顿的链(p75或重链)。开展实验以阐明高亲和力位点形成的机制。将人IL-2与人T淋巴细胞的高亲和力位点进行交联,产生了一种由IL-2、轻链和重链组成的150×10^3道尔顿的三元复合物。在表达人轻链和鼠重链的EL/Tac 3细胞上形成了与人IL-2的三元复合物,尽管人IL-2无法与不表达人轻链的亲本EL-4细胞结合。高亲和力三元复合物在溶解过程中稳定,并通过凝胶过滤色谱进行分离,且通过该方法对这些复合物的数量进行了定量。表达人轻链、鼠轻链和鼠重链的CT/hR-1细胞上高亲和力位点的数量几乎恒定,即使人或鼠轻链被特异性抗体阻断,这与之前的观察结果一致。这些结果表明,轻链和重链自身不会形成稳定的二元复合物,并且IL-2结合会诱导形成稳定的高亲和力三元复合物。