Wong F Susan, Moustakas Antonis K, Wen Li, Papadopoulos George K, Janeway Charles A
Department of Pathology and Microbiology, School of Medical Sciences, University of Bristol, Bristol, BS8 1TD, United Kingdom.
Proc Natl Acad Sci U S A. 2002 Apr 16;99(8):5551-6. doi: 10.1073/pnas.072037299. Epub 2002 Apr 9.
The recognition of MHC-peptide complexes by T cells is governed by structural considerations that are determined by the sequences of the individual components and their interaction with each other. We have studied the function of a highly diabetogenic CD8 T cell clone that is specific for insulin B15-23:H-2K(d). We have then related this to modeled MHC-peptide structures. The native peptide binds poorly to H-2K(d), because of the small glycine residue at peptide position p9 that is incapable of productive interactions with the hydrophobic residues of pocket F. In addition, electrostatic repulsions between the peptide glutamate residue at position 7 and 152D of the MHC molecule heavy chain contribute to the poor binding. However, B chain peptide 15-23 bound to K(d) shows excellent T cell stimulation and the induction of CD8 cytotoxic T cells. Peptide substitution has also shown that p6G is likely to be a T cell antigen receptor interaction site. Our studies have shown that the predictions seen in the models correlate closely with the observed effects in functional assays and provide insight into how this peptide, which would not be predicted to stimulate these cells on H-2K(d) binding studies alone, could activate such highly pathogenic T cells.
T细胞对MHC-肽复合物的识别受结构因素支配,这些因素由各个组分的序列及其相互作用决定。我们研究了一个高度致糖尿病的CD8 T细胞克隆的功能,该克隆对胰岛素B15-23:H-2K(d)具有特异性。然后我们将此与模拟的MHC-肽结构相关联。天然肽与H-2K(d)的结合较差,这是因为肽位置p9处的小甘氨酸残基无法与口袋F的疏水残基进行有效相互作用。此外,肽第7位的谷氨酸残基与MHC分子重链的152D之间的静电排斥也导致结合不佳。然而,与K(d)结合的B链肽15-23显示出出色的T细胞刺激作用以及CD8细胞毒性T细胞的诱导。肽替代研究还表明,p6G可能是T细胞抗原受体相互作用位点。我们的研究表明,模型中的预测与功能试验中观察到的效应密切相关,并深入了解了这种仅在H-2K(d)结合研究中预计不会刺激这些细胞的肽如何激活如此高致病性的T细胞。