Graduate Program in Immunology, Johns Hopkins School of Medicine, Baltimore, Maryland, United States of America.
PLoS One. 2013 Aug 8;8(8):e71228. doi: 10.1371/journal.pone.0071228. eCollection 2013.
Processing of antigens for presentation to helper T cells by MHC class II involves HLA-DM (DM) and HLA-DO (DO) accessory molecules. A mechanistic understanding of DO in this process has been missing. The leading model on its function proposes that DO inhibits the effects of DM. To directly study DO functions, we designed a recombinant soluble DO and expressed it in insect cells. The kinetics of binding and dissociation of several peptides to HLA-DR1 (DR1) molecules in the presence of DM and DO were measured. We found that DO reduced binding of DR1 to some peptides, and enhanced the binding of some other peptides to DR1. Interestingly, these enhancing and reducing effects were observed in the presence, or absence, of DM. We found that peptides that were negatively affected by DO were DM-sensitive, whereas peptides that were enhanced by DO were DM-resistant. The positive and negative effects of DO could only be measured on binding kinetics as peptide dissociation kinetics were not affected by DO. Using Surface Plasmon Resonance, we demonstrate direct binding of DO to a peptide-receptive, but not a closed conformation of DR1. We propose that DO imposes another layer of control on epitope selection during antigen processing.
抗原呈递给辅助性 T 细胞需要 MHC Ⅱ类分子,此过程需要 HLA-DM(DM)和 HLA-DO(DO)辅助分子。DO 在这一过程中的作用机制一直不清楚。目前的主导模型认为 DO 抑制 DM 的作用。为了直接研究 DO 的功能,我们设计了重组可溶性 DO 并在昆虫细胞中表达。在 DM 和 DO 的存在下,我们测量了几种肽与 HLA-DR1(DR1)分子结合和解离的动力学。我们发现 DO 减少了 DR1 与一些肽的结合,并增强了一些其他肽与 DR1 的结合。有趣的是,这些增强和减弱效应在 DM 存在或不存在的情况下都能观察到。我们发现,受 DO 负面影响的肽是 DM 敏感的,而受 DO 增强的肽是 DM 抗性的。只有在结合动力学上才能测量到 DO 的正、负效应,因为 DO 对肽解离动力学没有影响。我们使用表面等离子体共振证明了 DO 与肽接受但不是封闭构象的 DR1 的直接结合。我们提出,DO 在抗原加工过程中对表位选择施加了另一层控制。