Riberdy J M, Avva R R, Geuze H J, Cresswell P
Section of Immunobiology, Howard Hughes Medical Institute, Yale University School of Medicine, New Haven, Connecticut 06510.
J Cell Biol. 1994 Jun;125(6):1225-37. doi: 10.1083/jcb.125.6.1225.
We have compared the intracellular transport and subcellular distribution of MHC class II-invariant chain complexes in a wild-type HLA-DR3 homozygous cell line and a mutant cell line, T2.DR3. The latter has a defect in antigen processing and accumulates HLA-DR3 molecules associated with an invariant chain-derived peptide (CLIP) rather than the normal complement of peptides derived from endocytosed proteins. We find that in the wild-type cells, CLIP is transiently associated with HLA-DR3 molecules, suggesting that the peptide is a normal class II-associated intermediate generated during proteolysis of the invariant chain. In the mutant cell line proteolysis of the invariant chain is less efficient, and HLA-DR3/CLIP complexes are generated much more slowly. Examination of the mutant cell line by immunoelectronmicroscopy shows that class II-invariant chain complexes accumulate intracellularly in large acidic vesicles which contain lysosomal markers, including beta-hexosaminidase, cathepsin D, and the lysosomal membrane protein CD63. The markers in these vesicles are identical to those seen in the class II-containing vesicles (MIICs) seen in the wild-type cells but the morphology is drastically different. The vesicles in the mutant cells are endocytic, as measured by the internalization of BSA-gold conjugates. The implication of these findings for antigen processing in general and the nature of the mutation in particular are discussed.
我们比较了野生型HLA - DR3纯合细胞系和突变细胞系T2.DR3中MHC II类恒定链复合物的细胞内运输和亚细胞分布。后者在抗原加工方面存在缺陷,积累了与恒定链衍生肽(CLIP)相关的HLA - DR3分子,而不是来自内吞蛋白质的正常肽段互补物。我们发现,在野生型细胞中,CLIP与HLA - DR3分子短暂相关,这表明该肽是恒定链蛋白水解过程中产生的正常II类相关中间体。在突变细胞系中,恒定链的蛋白水解效率较低,HLA - DR3/CLIP复合物的产生要慢得多。通过免疫电子显微镜检查突变细胞系发现,II类恒定链复合物在含有溶酶体标记物(包括β - 己糖胺酶、组织蛋白酶D和溶酶体膜蛋白CD63)的大型酸性囊泡中在细胞内积累。这些囊泡中的标记物与野生型细胞中含II类的囊泡(MIICs)中的标记物相同,但形态却大不相同。通过BSA - 金偶联物的内化测量发现,突变细胞中的囊泡是内吞性的。本文讨论了这些发现对一般抗原加工的意义,特别是对突变性质的意义。