Arneson L S, Katz J F, Liu M, Sant A J
Department of Pathology, University of Chicago, Chicago, IL 60637, USA.
J Immunol. 2001 Dec 15;167(12):6939-46. doi: 10.4049/jimmunol.167.12.6939.
MHC class II molecules associate with peptides through pocket interactions and the formation of hydrogen bonds. The current paradigm suggests that the interaction of side chains of the peptide with pockets in the class II molecule is responsible for the formation of stable class II-peptide complexes. However, recent evidence has shown that the formation of hydrogen bonds between genetically conserved residues of the class II molecule and the main chain of the peptide contributes profoundly to peptide stability. In this study, we have used I-A(k), a class II molecule known to form strong pocket interactions with bound peptides, to probe the general importance of hydrogen bond integrity in peptide acquisition. Our studies have revealed that abolishing hydrogen bonds contributed by positions 81 or 82 in the beta-chain of I-A(k) results in class II molecules that are internally degraded when trafficked through proteolytic endosomal compartments. The presence of high-affinity peptides derived from either endogenous or exogenous sources protects the hydrogen bond-deficient variant from intracellular degradation. Together, these data indicate that disruption of the potential to form a complete hydrogen bond network between MHC class II molecules and bound peptides greatly diminishes the ability of class II molecules to bind peptides. The subsequent failure to stably acquire peptides leads to protease sensitivity of empty class II molecules, and thus to proteolytic degradation before export to the surface of APCs.
MHC II类分子通过口袋相互作用和氢键形成与肽段结合。目前的范式表明,肽段侧链与II类分子口袋的相互作用负责形成稳定的II类-肽复合物。然而,最近的证据表明,II类分子的遗传保守残基与肽段主链之间形成的氢键对肽段稳定性有深远贡献。在本研究中,我们使用了I-A(k),一种已知与结合肽段形成强口袋相互作用的II类分子,来探究氢键完整性在肽段获取中的普遍重要性。我们的研究表明,消除I-A(k)β链中81或82位贡献的氢键会导致II类分子在内体蛋白酶体区室运输时发生内部降解。来自内源性或外源性的高亲和力肽段的存在可保护缺乏氢键的变体免受细胞内降解。总之,这些数据表明,MHC II类分子与结合肽段之间形成完整氢键网络的潜力被破坏会大大降低II类分子结合肽段的能力。随后无法稳定获取肽段会导致空II类分子对蛋白酶敏感,从而在输出到抗原呈递细胞表面之前发生蛋白水解降解。