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在表达与CD4相互作用缺陷的突变II类主要组织相容性复合体分子的转基因小鼠中CD4 + T淋巴细胞的选择和功能

Selection and function of CD4+ T lymphocytes in transgenic mice expressing mutant MHC class II molecules deficient in their interaction with CD4.

作者信息

Gilfillan S, Shen X, König R

机构信息

Institut de Genetique et de Biologie Moleculaire et Cellulaire, Illkirch, C.U. de Strasbourg, France.

出版信息

J Immunol. 1998 Dec 15;161(12):6629-37.

PMID:9862691
Abstract

Interactions of the T cell coreceptors, CD4 and CD8, with MHC molecules participate in regulating thymocyte development and T lymphocyte activation and differentiation to memory T cells. However, the exact roles of these interactions in normal T cell development and function remain unclear. CD4 interacts with class II MHC7 molecules via several noncontiguous regions in both the class II MHC alpha- and beta-chains. We have introduced a double mutation that disrupts interaction with CD4 into the I-A(beta)k gene and used this construct to generate transgenic mice expressing only mutant class II MHC. Although CD4+ thymocytes matured to the single-positive stage in these mice, their frequency was reduced by threefold compared with that of wild-type transgenics. Positive selection of CD4+ T cells in the mutant transgenic mice may have been mediated by TCRs with a higher than usual affinity for class II MHC/Ag complexes. In A(beta)k mutant transgenics, peripheral CD4+ lymphocytes promoted B cell differentiation to plasma cells. These CD4+ T cells also secreted IFN-gamma in response to various stimuli (e.g., protein Ag, bacterial superantigen, and alloantigen), but were deficient in IL-2 secretion. Interactions between CD4 and class II MHC molecules appeared to regulate lymphokine production, with a strong bias toward IFN-gamma and against IL-2 in the absence of these interactions. Our results have implications for the manipulation of T cell-dependent immune responses.

摘要

T细胞共受体CD4和CD8与MHC分子的相互作用参与调节胸腺细胞发育以及T淋巴细胞激活和向记忆T细胞的分化。然而,这些相互作用在正常T细胞发育和功能中的具体作用仍不清楚。CD4通过II类MHCα链和β链中的几个不连续区域与II类MHC分子相互作用。我们已将破坏与CD4相互作用的双突变引入I-A(beta)k基因,并利用该构建体生成仅表达突变II类MHC的转基因小鼠。尽管这些小鼠中的CD4+胸腺细胞成熟至单阳性阶段,但其频率与野生型转基因小鼠相比降低了三倍。突变转基因小鼠中CD4+ T细胞的阳性选择可能由对II类MHC/抗原复合物具有高于正常亲和力的TCR介导。在A(beta)k突变转基因小鼠中,外周CD4+淋巴细胞促进B细胞分化为浆细胞。这些CD4+ T细胞在受到各种刺激(如蛋白质抗原、细菌超抗原和同种异体抗原)时也分泌IFN-γ,但IL-2分泌不足。CD4与II类MHC分子之间的相互作用似乎调节淋巴因子的产生,在缺乏这些相互作用时强烈偏向于IFN-γ而不利于IL-2。我们的结果对T细胞依赖性免疫反应的调控具有启示意义。

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