Liang M N, Beeson C, Mason K, McConnell H M
Department of Chemistry, Stanford University, CA 94305-5080, USA.
Int Immunol. 1995 Sep;7(9):1397-404. doi: 10.1093/intimm/7.9.1397.
The region comprising residues 83-107 of the extracytoplasmic domain of the class II MHC-associated invariant chain protein is essential for its functional interaction with MHC proteins. A nested set of peptides that encompass this region, designated the class II invariant chain-derived peptides (CLIP), bind to many MHC proteins and inhibit the binding of antigenic peptides. The kinetics of the reactions between CLIP and five different murine class II MHC proteins have been determined. Specificity of CLIP binding was confirmed by competition with antigenic peptides. Large differences in the reaction rates were observed. For example, half-times of dissociation ranged from 4.4 min to 17.5 h, a > 200-fold difference. These results demonstrate that CLIP bind to MHC heterodimers at a site that involves the polymorphic residues. These data support the hypothesis that the CLIP binding site is within the peptide binding groove. It is further suggested that these differences in kinetic stabilities of CLIP-MHC protein complexes might affect the diversity of endogenous peptides bound to class II MHC proteins.
II类主要组织相容性复合体(MHC)相关恒定链蛋白胞外结构域中包含83 - 107位氨基酸残基的区域,对于其与MHC蛋白的功能相互作用至关重要。一组嵌套的包含该区域的肽段,称为II类恒定链衍生肽(CLIP),可与许多MHC蛋白结合并抑制抗原肽的结合。已测定了CLIP与五种不同小鼠II类MHC蛋白之间反应的动力学。通过与抗原肽竞争证实了CLIP结合的特异性。观察到反应速率存在很大差异。例如,解离半衰期从4.4分钟到17.5小时不等,相差超过200倍。这些结果表明,CLIP在涉及多态性残基的位点与MHC异二聚体结合。这些数据支持CLIP结合位点位于肽结合槽内的假说。进一步表明,CLIP - MHC蛋白复合物动力学稳定性的这些差异可能会影响与II类MHC蛋白结合的内源性肽的多样性。