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通过免疫电子显微镜对II类主要组织相容性复合体区室进行表征。

Characterization of MHC Class II Compartments by Immunoelectron Microscopy.

作者信息

Kleijmeer MJ, Raposo G, Geuze HJ

机构信息

Department of Cell Biology, Faculty of Medicine and Institute for Biomembranes, Utrecht University, Heidelberglaan 100, Utrecht, 3584 CX, The Netherlands

出版信息

Methods. 1996 Oct;10(2):191-207. doi: 10.1006/meth.1996.0095.

Abstract

At present the best way to determine the precise intracellular localization of proteins, in a potentially semiquantitative way, is the combination of ultrathin cryosectioning and immunogold labeling. This paper focuses on the intracellular localization of MHC class II molecules, which are involved in the T helper response to exogenous antigens. Newly synthesized MHC class II heterodimers associate with invariant chain molecules, which in turn direct the MHC class II complex to the endocytotic route. Proteolytic digestion of the invariant chain frees MHC class II molecules so that they can bind antigenic peptides. Immunoelectron microscopy has been an important tool to identify the endocytotic compartments that are enriched in MHC class II and that are the potential sites of antigenic peptide binding. The methods that can be used to characterize MHC class II compartments (MIICs) in various antigen-presenting cells (APCs) are described in detail. In all APCs studies so far, MIICs are situated late in the endocytotic pathway and display lysosomal characteristics. Still, immunoelectron microscopy allows us to define subsets of MIICs, which can be distinguished by their morphology, accessibility to endocytotic tracers, and expression of invariant chain and HLA-DM. Different types of MIICs can be found that display internal vesicles (multivesicular), internal membrane sheets (multilaminar), or both. The multivesicular type of MIIC contains detectable invariant chain and is the primary site of antigen entry. The multilaminar MIIC is situated later in the endocytotic route and has lost most of the invariant chain antigenicity. These data suggest a sequential maturation of MIICs, which correlates with the degradation of invariant chain and the subsequent binding of antigenic peptides.

摘要

目前,以一种可能的半定量方式确定蛋白质精确细胞内定位的最佳方法是超薄冷冻切片和免疫金标记相结合。本文重点关注参与对外源抗原的T辅助细胞应答的MHC II类分子的细胞内定位。新合成的MHC II类异二聚体与恒定链分子结合,恒定链分子进而将MHC II类复合物导向内吞途径。恒定链的蛋白水解消化释放出MHC II类分子,使其能够结合抗原肽。免疫电子显微镜一直是鉴定富含MHC II类且是抗原肽结合潜在位点的内吞区室的重要工具。本文详细描述了可用于表征各种抗原呈递细胞(APC)中MHC II类区室(MIIC)的方法。在迄今为止所有的APC研究中,MIIC位于内吞途径的后期,并表现出溶酶体特征。尽管如此,免疫电子显微镜使我们能够定义MIIC的亚群,它们可以通过形态、对内吞示踪剂的可及性以及恒定链和HLA - DM的表达来区分。可以发现不同类型的MIIC,它们表现出内部囊泡(多囊泡)、内部膜片(多层)或两者皆有。多囊泡类型的MIIC含有可检测到的恒定链,是抗原进入的主要位点。多层MIIC位于内吞途径的更后期,并且已经失去了大部分恒定链抗原性。这些数据表明MIIC的顺序成熟,这与恒定链的降解以及随后抗原肽的结合相关。

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