Nalefski E A, Wong J G, Rao A
Division of Tumor Virology, Dana-Farber Cancer Institute, Boston, Massachusetts 02115.
J Biol Chem. 1990 May 25;265(15):8842-6.
The T-cell antigen receptor mediates recognition of foreign antigens physically associated with major histocompatibility complex (MHC) proteins. The tertiary structure of the T-cell receptor is thought to resemble that of immunoglobulin Fab fragments and to possess corresponding complementarity-determining regions (CDRs) that contact antigen-MHC. To test such a model for the T-cell receptor, we have generated T-cell hybridomas that express a wild-type or mutant form of the T-cell receptor present on the p-azobenzenearsonate-specific T-cell clone D5. Mutation of 2 amino acids (Tyr26 to serine, Gly28 to valine) in the predicted CDR1 of the D5 T-cell receptor alpha chain caused a markedly diminished response to antigen without affecting the response to anti-CD3 and anti-T-cell receptor antibodies. These results constitute the first test of the prediction that CDR1 in the T-cell receptor alpha chain is important for antigen-MHC recognition, thus providing strong evidence for the structural model of the T-cell antigen receptor based upon immunoglobulin.
T细胞抗原受体介导对与主要组织相容性复合体(MHC)蛋白物理相关的外来抗原的识别。T细胞受体的三级结构被认为类似于免疫球蛋白Fab片段,并拥有与抗原-MHC接触的相应互补决定区(CDR)。为了测试这种T细胞受体模型,我们生成了T细胞杂交瘤,其表达存在于对氨基苯砷酸盐特异性T细胞克隆D5上的野生型或突变形式的T细胞受体。D5 T细胞受体α链预测的CDR1中的2个氨基酸(酪氨酸26突变为丝氨酸,甘氨酸28突变为缬氨酸)发生突变,导致对抗原的反应明显减弱,而不影响对抗CD3和抗T细胞受体抗体的反应。这些结果首次验证了T细胞受体α链中的CDR1对抗原-MHC识别很重要这一预测,从而为基于免疫球蛋白的T细胞抗原受体结构模型提供了有力证据。