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IgG 免疫复合物的交叉呈递。

Cross-presentation of IgG-containing immune complexes.

机构信息

Division of Gastroenterology, Department of Medicine, Brigham and Women's Hospital, Harvard Medical School, 75 Francis Street, Boston, MA 02115, USA.

出版信息

Cell Mol Life Sci. 2013 Apr;70(8):1319-34. doi: 10.1007/s00018-012-1100-8. Epub 2012 Jul 31.

Abstract

IgG is a molecule that functionally combines facets of both innate and adaptive immunity and therefore bridges both arms of the immune system. On the one hand, IgG is created by adaptive immune cells, but can be generated by B cells independently of T cell help. On the other hand, once secreted, IgG can rapidly deliver antigens into intracellular processing pathways, which enable efficient priming of T cell responses towards epitopes from the cognate antigen initially bound by the IgG. While this process has long been known to participate in CD4(+) T cell activation, IgG-mediated delivery of exogenous antigens into a major histocompatibility complex (MHC) class I processing pathway has received less attention. The coordinated engagement of IgG with IgG receptors expressed on the cell-surface (FcγR) and within the endolysosomal system (FcRn) is a highly potent means to deliver antigen into processing pathways that promote cross-presentation of MHC class I and presentation of MHC class II-restricted epitopes within the same dendritic cell. This review focuses on the mechanisms by which IgG-containing immune complexes mediate such cross-presentation and the implications that this understanding has for manipulation of immune-mediated diseases that depend upon or are due to the activities of CD8(+) T cells.

摘要

IgG 是一种分子,它在功能上结合了先天免疫和适应性免疫的各个方面,因此连接了免疫系统的两个分支。一方面,IgG 是由适应性免疫细胞产生的,但可以由 B 细胞在不需要 T 细胞帮助的情况下产生。另一方面,一旦分泌,IgG 可以迅速将抗原递呈到细胞内处理途径中,从而有效地启动针对最初与 IgG 结合的同源抗原表位的 T 细胞反应。虽然这一过程早已被认为参与了 CD4(+)T 细胞的激活,但 IgG 介导的将外源性抗原递呈到主要组织相容性复合物 (MHC)I 类加工途径的过程受到的关注较少。IgG 与细胞表面表达的 IgG 受体 (FcγR) 和内体溶酶体系统 (FcRn) 的协调结合是一种将抗原递呈到促进 MHC I 类交叉呈递和同一树突状细胞中 MHC II 类限制表位呈递的处理途径的高效手段。本文综述了 IgG 免疫复合物介导这种交叉呈递的机制,以及这一理解对依赖或由于 CD8(+)T 细胞的活性而发生的免疫介导疾病的干预的意义。

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