Kropshofer H, Vogt A B, Moldenhauer G, Hammer J, Blum J S, Hämmerling G J
German Cancer Research Center, Department of Molecular Immunology, Heidelberg, Germany.
EMBO J. 1996 Nov 15;15(22):6144-54.
Antigenic peptide loading of classical major histocompatibility complex (MHC) class II molecules requires the exchange of the endogenous invariant chain fragment CLIP (class II associated Ii peptide) for peptides derived from antigenic proteins. This process is facilitated by the non-classical MHC class II molecule HLA-DM (DM) which catalyzes the removal of CLIP. Up to now it has been unclear whether DM releases self-peptides other than CLIP and thereby modifies the peptide repertoire presented to T cells. Here we report that DM can release a variety of peptides from HLA-DR molecules. DR molecules isolated from lymphoblastoid cell lines were found to carry a sizeable fraction of self-peptides that are sensitive to the action of DM. The structural basis for this DM sensitivity was elucidated by high-performance size exclusion chromatography and a novel mass spectrometry binding assay. The results demonstrate that the overall kinetic stability of a peptide bound to DR determines its sensitivity to removal by DM. We show that DM removes preferentially those peptides that contain at least one suboptimal side chain at one of their anchor positions or those that are shorter than 11 residues. These findings provide a rationale for the previously described ligand motifs and the minimal length requirements of naturally processed DR-associated self-peptides. Thus, in endosomal compartments, where peptide loading takes place, DM can function as a versatile peptide editor that selects for high-stability MHC class II-peptide complexes by kinetic proofreading before these complexes are presented to T cells.
经典主要组织相容性复合体(MHC)II类分子的抗原肽装载需要将内源性恒定链片段CLIP(II类相关Ii肽)替换为源自抗原蛋白的肽。这一过程由非经典MHC II类分子HLA-DM(DM)促进,它催化CLIP的去除。到目前为止,尚不清楚DM是否会释放除CLIP之外的自身肽,从而改变呈递给T细胞的肽库。在此我们报告,DM可以从HLA-DR分子中释放多种肽。从淋巴母细胞系分离的DR分子被发现携带相当一部分对DM作用敏感的自身肽。通过高效尺寸排阻色谱和一种新型质谱结合测定法阐明了这种对DM敏感的结构基础。结果表明,与DR结合的肽的整体动力学稳定性决定了其被DM去除的敏感性。我们表明,DM优先去除那些在其一个锚定位置含有至少一个次优侧链或短于11个残基的肽。这些发现为先前描述的配体基序以及天然加工的DR相关自身肽的最小长度要求提供了理论依据。因此,在发生肽装载的内体区室中,DM可以作为一种通用的肽编辑器,在这些复合物呈递给T细胞之前,通过动力学校对选择高稳定性的MHC II类-肽复合物。