Sugita M, Brenner M B
Department of Rheumatology and Immunology, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115.
J Exp Med. 1994 Dec 1;180(6):2163-71. doi: 10.1084/jem.180.6.2163.
Proper assembly of the class I heavy chain (HC), beta 2-microglobulin (beta 2m), and peptide must occur in the endoplasmic reticulum (ER) in order for MHC class I molecules to be expressed on the cell surface. Newly synthesized class I HC bind calnexin, an ER resident chaperone. These calnexin-associated class I HC appeared to lack the stable association with beta 2m in peptide transporter-deficient T2 cells since beta 2m-unassociated class I HC-specific HC10 antibody, but not beta 2m-associated class I HC-specific W6/32 antibody, coimmunoprecipitated calnexin. To determine the precursor-product relationship of the pool of HC that bind peptide, class I-restricted peptides were added to lysates of T2 cells in vitro. These peptides stabilized preexisting beta 2m-associated HC complexes (beta 2m+:HC:pep-), but had no significant effect on the preexisting pool of calnexin-associated HC that lack beta 2m. Release of HC from calnexin appeared to be controlled by the binding of beta 2m, since beta 2m-deficient FO-1 cells showed a prolonged association of class I HC with calnexin, while beta 2m-transfected FO-1 cells displayed a more rapid dissociation of class I HC from calnexin. Consistent with this result, the dissociation of class I HC from calnexin did not appear to be dependent on peptide binding since the dissociation rates were similar in peptide transporter-deficient T2 cells and in wild-type T1 cells. From these observations, we speculate that in the stepwise assembly of class I molecules, calnexin may mediate dimerization of class I HC with beta 2m, and that the unstable beta 2m+:HC:pep- complexes, after dissociation from calnexin, subsequently bind peptide to complete the assembly.
为了使MHC I类分子在细胞表面表达,I类重链(HC)、β2微球蛋白(β2m)和肽必须在内质网(ER)中正确组装。新合成的I类HC与钙连蛋白结合,钙连蛋白是一种内质网驻留伴侣蛋白。在肽转运缺陷的T2细胞中,这些与钙连蛋白相关的I类HC似乎缺乏与β2m的稳定结合,因为未与β2m结合的I类HC特异性HC10抗体,而不是与β2m结合的I类HC特异性W6/32抗体,能共免疫沉淀钙连蛋白。为了确定结合肽的HC池的前体-产物关系,将I类限制性肽体外添加到T2细胞裂解物中。这些肽稳定了预先存在的与β2m结合的HC复合物(β2m+:HC:肽-),但对预先存在的缺乏β2m的与钙连蛋白结合的HC池没有显著影响。HC从钙连蛋白上的释放似乎受β2m结合的控制,因为缺乏β2m的FO-1细胞显示I类HC与钙连蛋白的结合时间延长,而转染了β2m的FO-1细胞则显示I类HC从钙连蛋白上的解离更快。与该结果一致,I类HC从钙连蛋白上的解离似乎不依赖于肽结合,因为在肽转运缺陷的T2细胞和野生型T1细胞中解离速率相似。基于这些观察结果,我们推测在I类分子的逐步组装过程中,钙连蛋白可能介导I类HC与β2m的二聚化,并且不稳定的β2m+:HC:肽-复合物从钙连蛋白解离后,随后结合肽以完成组装。