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MHC II类分子I-Ek的CD4结合区域的改变不会阻碍CD4+ T细胞的发育。

Alterations in CD4-binding regions of the MHC class II molecule I-Ek do not impede CD4+ T cell development.

作者信息

Yelon D, Schaefer K L, Berg L J

机构信息

Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA 02138, USA.

出版信息

J Immunol. 1999 Feb 1;162(3):1348-58.

PMID:9973389
Abstract

The T cell coreceptors CD4 and CD8 enhance T cell responses to TCR signals by participating in complexes containing TCR, coreceptor, and MHC molecules. These ternary complexes are also hypothesized to play a seminal role during T cell development, although the precise timing, frequency, and consequences of TCR-coreceptor-MHC interactions during positive selection and lineage commitment remain unclear. To address these issues, we designed transgenic mice expressing mutant I-Ek molecules with reduced CD4-binding capability. These transgenic lines were crossed to three different lines of I-Ek-specific TCR transgenic mice, and the efficiency of production of CD4+ lineage cells in the doubly transgenic progeny was assessed. Surprisingly, replacing wild-type I-Ek molecules with these mutant molecules did not affect the production of CD4+CD8- thymocytes or CD4+ peripheral T cells expressing any of the three TCRs examined. These data, when considered together with other experiments addressing the role of coreceptor during development, suggest that not all MHC class II-specific thymocytes require optimal and simultaneous TCR-CD4-MHC interactions to mature. Alternatively, it is possible that these particular alterations of I-Ek do not disrupt the CD4-MHC interaction adequately, potentially indicating functional differences between I-A and I-E MHC class II molecules.

摘要

T细胞共受体CD4和CD8通过参与包含TCR、共受体和MHC分子的复合物来增强T细胞对TCR信号的反应。这些三元复合物也被认为在T细胞发育过程中起关键作用,尽管在阳性选择和谱系定向过程中TCR-共受体-MHC相互作用的确切时间、频率和后果仍不清楚。为了解决这些问题,我们设计了表达具有降低的CD4结合能力的突变I-Ek分子的转基因小鼠。将这些转基因品系与三种不同的I-Ek特异性TCR转基因小鼠品系杂交,并评估双转基因后代中CD4+谱系细胞的产生效率。令人惊讶的是,用这些突变分子取代野生型I-Ek分子并不影响表达所检测的三种TCR中任何一种的CD4+CD8-胸腺细胞或CD4+外周T细胞的产生。这些数据与其他研究共受体在发育过程中作用的实验一起考虑时,表明并非所有II类MHC特异性胸腺细胞都需要最佳且同时的TCR-CD4-MHC相互作用才能成熟。或者,有可能I-Ek的这些特定改变没有充分破坏CD4-MHC相互作用,这可能表明I-A和I-E II类MHC分子之间存在功能差异。

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