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针对杂交I-A分子的T细胞克隆。用单克隆抗I-Ak抗体进行鉴别。

T cell clones specific for hybrid I-A molecules. Discrimination with monoclonal anti-I-Ak antibodies.

作者信息

Beck B N, Frelinger J G, Shigeta M, Infante A J, Cummings D, Hämmerling G, Fathman C G

出版信息

J Exp Med. 1982 Oct 1;156(4):1186-94. doi: 10.1084/jem.156.4.1186.

Abstract

Alloreactive and soluble antigen-reactive, I-A-restricted T cell clones were examined for their ability to recognize hybrid I-A antigens. Several clones that recognized hybrid I-A(b)/I-A(k) molecules on (C57BL/6 x A/J)F(1) [(B6A)F(1)] spleen cells were studied. We were able to distinguish clones that recognized hybrid I-A molecules of the A(b)(a)A(k)(beta) type from those that recognized A(k)(a)A(b)(beta) molecules. We reached this conclusion by considering data from three independent types of experiments. (a) Monoclonal antibodies were used to inhibit T cell stimulation. Antibodies 10.2.16 and H116.32 distinguished two mutually exclusive "families" of T cell clones. One group of clones was inhibited by 10-2.16 and not H116.32, the other group exhibited reciprocal inhibition. (b) T cell proliferation was assayed using antigen-presenting cells from B6.C-H-2(bml2) (bml2) and [bml2 x B10.A(4R)]F(1) mice. Because the bml2 strain has a mutation that results in an altered A(b)(beta) polypeptide chain (A(bm12)(beta)), we reasoned that clones that could recognize the [bm12 x B 10.A(4R)]F(1) cells were recognizing A(b)(a)A(k)(beta) molecules. Alternatively, clones not recognizing [bml2 x B10.A(4R)]F(1) cells had specificity for A(k)(a)A(b)(beta) molecules. (c) I-A molecules immunoprecipitated from radiolabeled (B6A)F(1) splenocyte extracts were analyzed by two-dimensional sodium dodecyl sulfate-polyacrylamide gel electrophoresis. These experiments confirmed an earlier report that antibody 10.2.16 recognized determinants on the A(k)(beta) chain (12). Antibody H116.32 immunoprecipitated products consistent with recognition of A(k)(a) determinants. Taken together, these three types of results offer conclusive evidence that T cell clones recognizing "hybrid" I-A molecules use either A(b(k)A(k)(beta) or A(k)(a)A(b)(beta) molecules as recognition or restriction sites. Clones whose proliferation was supported by [bm 12 x B10.A(4R)]F(1) cells and blocked by anti-I-A(k) antibody 10-2.16 recognized A(b)(a)A(k)(beta) B molecules. Clones that were blocked by antibody H116.32 and did not recognize [bml2 X B10.A(4R)]F(1) cells use a recognition site(s) on A(b)(a)A(k)(beta) molecules. Thus, we can demonstrate both functionally and biochemically that hybrid F(1) I-A molecules of the structure A(k)(a)A(b)(beta) and A(b)(a)A(k)(beta) both exist on (B6A)F(1) splenocytes and that both configurations are used in immune recognition phenomena.

摘要

检测了同种反应性和可溶性抗原反应性、I-A限制性T细胞克隆识别杂交I-A抗原的能力。研究了几个能识别(C57BL/6×A/J)F1[(B6A)F1]脾细胞上杂交I-A(b)/I-A(k)分子的克隆。我们能够区分识别A(b)(α)A(k)(β)型杂交I-A分子的克隆和识别A(k)(α)A(b)(β)分子的克隆。我们通过考虑来自三种独立类型实验的数据得出了这一结论。(a)使用单克隆抗体抑制T细胞刺激。抗体10.2.16和H116.32区分了两个相互排斥的T细胞克隆“家族”。一组克隆被10-2.16抑制而不被H116.32抑制,另一组表现出相反的抑制作用。(b)使用来自B6.C-H-2(bml2)(bml2)和[bml2×B10.A(4R)]F1小鼠的抗原呈递细胞检测T细胞增殖。由于bml2品系有一个导致A(b)(β)多肽链改变(A(bm12)(β))的突变,我们推断能够识别[bml2×B10.A(4R)]F1细胞的克隆识别的是A(b)(α)A(k)(β)分子。或者,不识别[bml2×B10.A(4R)]F1细胞的克隆对A(k)(α)A(b)(β)分子具有特异性。(c)通过二维十二烷基硫酸钠-聚丙烯酰胺凝胶电泳分析从放射性标记的(B6A)F1脾细胞提取物中免疫沉淀的I-A分子。这些实验证实了早期的一份报告,即抗体10.2.16识别A(k)(β)链上的决定簇(12)。抗体H116.32免疫沉淀的产物与识别A(k)(α)决定簇一致。综合起来,这三种类型的结果提供了确凿的证据,即识别“杂交”I-A分子的T细胞克隆使用A(b)(α)A(k)(β)或A(k)(α)A(b)(β)分子作为识别或限制位点。其增殖由[bml2×B10.A(4R)]F1细胞支持并被抗I-A(k)抗体10-2.16阻断的克隆识别A(b)(α)A(k)(β)B分子。被抗体H116.32阻断且不识别[bml2×B10.A(4R)]F1细胞的克隆使用A(b)(α)A(k)(β)分子上的一个识别位点。因此,我们可以在功能和生化方面证明,结构为A(k)(α)A(b)(β)和A(b)(α)A(k)(β)的杂交F1 I-A分子都存在于(B6A)F1脾细胞上,并且这两种构型都用于免疫识别现象。

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