Nag B, Passmore D, Kendrick T, Bhayani H, Sharma S D
Anergen Inc., Redwood City, California 94063.
J Biol Chem. 1992 Nov 5;267(31):22624-9.
To evaluate the functional role of the N-linked oligosaccharides of major histocompatibility complex (MHC) class II molecules, affinity-purified murine IAs class II molecules were deglycosylated in the presence of asparagine amidase enzyme. The deglycosylated IAs molecules were characterized by 12% SDS-polyacrylamide gel analysis under reduced and native conditions and the complete enzymatic removal of all three N-linked sugar components from the alpha/beta heterodimer was confirmed by lectin-link Western blot analysis. Like the native IAs molecules, the deglycosylated IAs molecules were fully capable of binding an antigenic peptide from myelin basic protein MBP(89-101). The kinetics of dissociation of preformed complexes of IAs.MBP(89-101) and deglycosylated IAs.MBP(89-101) were compared at 4 and at 37 degrees C. Both complexes were equally stable at 4 degrees C; however, at 37 degrees C the deglycosylated IAs.MBP(89-101) complexes showed an increased rate of dissociation as compared with the native IAs.MBP(89-101) complexes. When tested for their ability to recognize the T cell receptor on T cells, both complexes bound to cloned HS-1 T cells that recognize and respond to IAs.MBP(89-101). Finally, the complexes of deglycosylated IAs.MBP(89-101) were tested for the induction of in vitro nonresponsiveness and compared with native IAs.MBP(89-101) complexes. Both complexes were capable of inducing 95-100% nonresponsiveness in a proliferation assay. These results suggest that the N-linked oligosaccharide of MHC class II molecules may not be essential for either antigenic peptide binding or T cell recognition. In addition results obtained here provide evidence that the carbohydrate moities of MHC class II molecules may not be involved in induction of T cell clonal anergy.
为评估主要组织相容性复合体(MHC)II类分子的N-连接寡糖的功能作用,亲和纯化的小鼠IAs II类分子在天冬酰胺酶存在的情况下进行去糖基化处理。去糖基化的IAs分子通过在还原和天然条件下的12% SDS-聚丙烯酰胺凝胶分析进行表征,并且通过凝集素连接的蛋白质印迹分析证实从α/β异二聚体中完全酶促去除了所有三种N-连接糖成分。与天然IAs分子一样,去糖基化的IAs分子完全能够结合来自髓鞘碱性蛋白MBP(89 - 101)的抗原肽。在4℃和37℃下比较了IAs.MBP(89 - 101)和去糖基化的IAs.MBP(89 - 101)预形成复合物的解离动力学。两种复合物在4℃时同样稳定;然而,在37℃时,与天然IAs.MBP(89 - 101)复合物相比,去糖基化的IAs.MBP(89 - 101)复合物显示出解离速率增加。当测试它们识别T细胞上T细胞受体的能力时,两种复合物都与识别并对IAs.MBP(89 - 101)作出反应的克隆HS-1 T细胞结合。最后,测试去糖基化的IAs.MBP(89 - 101)复合物诱导体外无反应性的能力,并与天然IAs.MBP((89 - 101)复合物进行比较。在增殖试验中,两种复合物都能够诱导95 - 100%的无反应性。这些结果表明,MHC II类分子的N-连接寡糖对于抗原肽结合或T细胞识别可能不是必需的。此外,此处获得的结果提供了证据,表明MHC II类分子的碳水化合物部分可能不参与T细胞克隆无能的诱导。