Vyas J M, Rich R R, Howell D D, Shawar S M, Rodgers J R
Department of Microbiology and Immunology, Baylor College of Medicine, Houston, Texas 77030.
J Exp Med. 1994 Jan 1;179(1):155-65. doi: 10.1084/jem.179.1.155.
Taking advantage of our understanding of the peptide specificity of the major histocompatibility complex class I-b molecule M3a, we sought to determine why these molecules are poorly represented on the cell surface. To this end we constructed a chimeric molecule with the alpha 1 and alpha 2 domains of M3a and alpha 3 of Ld thereby allowing use of available monoclonal antibodies to quantify surface expression. Transfected, but not control, B10.CAS2 (H-2M3b) cells were lysed readily by M3a-restricted monoclonal cytotoxic T lymphocytes. Thus, the chimera bound, trafficked, and presented endogenous mitochondrial peptides. However, despite high levels of M3a-Ld mRNA, transfectants were negative by surface staining. This finding was consistent with inefficient trafficking to the cell surface. Incubation at 26 degrees C, thought to permit trafficking of unoccupied heavy (H) chains, resulted in detectable cell surface expression of chimeric molecules. Incubation with exogenous peptide at 26 degrees C (but not at 37 degrees C) greatly enhanced expression of M3a-Ld molecules in a dose-dependent manner, suggesting stabilization of unoccupied molecules. Stable association of beta 2-microglobulin with the chimeric H chain was observed in labeled cell lysates only in the presence of exogenous specific peptide, indicating that peptide is required for the formation of a ternary complex. These results indicate that surface expression of M3a-Ld is limited largely by the steady-state availability of endogenous peptides. Since most known M3a-binding peptides are N-formylated, native M3a may normally be expressed at high levels only during infection by intracellular bacteria.
利用我们对主要组织相容性复合体 I 类 b 分子 M3a 的肽特异性的了解,我们试图确定为什么这些分子在细胞表面的表达水平较低。为此,我们构建了一个嵌合分子,它包含 M3a 的α1 和α2 结构域以及 Ld 的α3 结构域,从而能够利用现有的单克隆抗体来定量表面表达。转染的 B10.CAS2(H-2M3b)细胞(而非对照细胞)很容易被 M3a 限制性单克隆细胞毒性 T 淋巴细胞裂解。因此,该嵌合体能够结合、运输并呈递内源性线粒体肽。然而,尽管 M3a-Ld mRNA 水平很高,但转染细胞经表面染色呈阴性。这一发现与向细胞表面的运输效率低下是一致的。在 26℃孵育(据认为这允许未占据的重链运输)导致嵌合分子在细胞表面有可检测到的表达。在 26℃(而非 37℃)与外源性肽一起孵育以剂量依赖的方式极大地增强了 M3a-Ld 分子的表达,这表明未占据分子的稳定性增强。仅在外源性特异性肽存在的情况下,在标记的细胞裂解物中观察到β2-微球蛋白与嵌合重链的稳定结合,这表明形成三元复合物需要肽。这些结果表明,M3a-Ld 的表面表达在很大程度上受内源性肽的稳态可用性限制。由于大多数已知的 M3a 结合肽是 N-甲酰化的,天然 M3a 可能通常仅在细胞内细菌感染期间高水平表达。