Silva C L, Lukacs K, Lowrie D B
Laboratory for Leprosy and Mycobacteria Research, National Institute for Medical Research, London.
Immunology. 1993 Jan;78(1):35-42.
When the immunodominant 65,000 MW heat-shock protein of Mycobacterium leprae (ML65hsp) was expressed from the transfected mycobacterial gene in the mouse macrophage cell line J774.G8, the antigen was recognized by specifically sensitized CD4+ splenocytes in association with major histocompatibility complex (MHC) class II and CD4. Inhibition by monensin, leupeptin and chloroquine but not brefeldin A indicated dependence of presentation upon endosomal antigen processing. Although direct access of the endogenously synthesized antigen to the endosomal pathway of presentation, without extracellular release followed by endocytosis, could not be discounted, antigen was present in supernatants of the transfected cells in a form that could be presented by fixed macrophages and a form that required further processing for presentation. Each of three monoclonal antibodies (mAb) specific for widely separated linear amino acid epitopes of the antigen strongly inhibited recognition, suggesting steric interference with antigen-presenting cell (APC)-T cell interaction. Tests with splenocytes from vaccinated congenic mice indicated that recognition was not restricted by MHC haplotype. The significance and mechanism of this apparent MHC context-independent interaction of the presented antigen with specific T-cell receptor (TcR) remain to be explored.
当麻风分枝杆菌的免疫显性65000分子量热休克蛋白(ML65hsp)通过转染的分枝杆菌基因在小鼠巨噬细胞系J774.G8中表达时,该抗原与主要组织相容性复合体(MHC)II类分子和CD4一起被特异性致敏的CD4⁺脾细胞识别。莫能菌素、亮肽素和氯喹能抑制这种识别,但布雷菲德菌素A不能,这表明呈递依赖于内体抗原加工。尽管不能排除内源性合成的抗原直接进入呈递的内体途径而不经过细胞外释放再内吞的情况,但抗原以可被固定巨噬细胞呈递的形式以及需要进一步加工才能呈递的形式存在于转染细胞的上清液中。三种针对该抗原广泛分离的线性氨基酸表位的单克隆抗体(mAb)中的每一种都强烈抑制识别,提示对抗抗原呈递细胞(APC)-T细胞相互作用的空间干扰。用接种疫苗的同基因小鼠的脾细胞进行的试验表明,识别不受MHC单倍型限制。这种呈递抗原与特异性T细胞受体(TcR)明显的MHC背景非依赖性相互作用的意义和机制仍有待探索。