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一个小鼠Cκ特异性T细胞克隆表明,DC-SIGN是抗体介导的用于MHC II类呈递的T细胞表位递送的有效靶点。

A mouse C kappa-specific T cell clone indicates that DC-SIGN is an efficient target for antibody-mediated delivery of T cell epitopes for MHC class II presentation.

作者信息

Schjetne Karoline W, Thompson Keith M, Aarvak Tanja, Fleckenstein Burkhard, Sollid Ludvig M, Bogen Bjarne

机构信息

Institute of Immunology, University of Oslo, Rikshospitalet, 0027 Oslo, Norway.

出版信息

Int Immunol. 2002 Dec;14(12):1423-30. doi: 10.1093/intimm/dxf110.

DOI:10.1093/intimm/dxf110
PMID:12456590
Abstract

In vaccine development, a major objective is to induce strong, specific T cell responses. This might be obtained by targeting antigen to cell surface molecules that efficiently channel the antigen into endocytic compartments for loading of MHC molecules. Antibodies have been used to deliver antigen; however, it is important to define optimal targets on antigen-presenting cells (APC) for efficient delivery. For this purpose, we have established a T cell readout that can be used to screen large numbers of different mAb for their ability to load MHC class II molecules. The novel human CD4+ T cell clone is specific for mouse Ig C kappa (40-48) and restricted by HLA-DR4 (DRA1,B1*0401). DR4 apparently presents both mouse and human C kappa 40-48, but there is no cross-reaction at the T cell level. B cells from DR4 transgenic mice spontaneously process and present the mouse C kappa peptide. The mouse C kappa -specific T cell readout was used to demonstrate that mouse mAb specific for human dendritic cell (DC)-specific ICAM-grabbing non-integrin (DC-SIGN), a novel DC-specific molecule, were 10- to 1000-fold more potent at inducing kappa-specific human CD4+ T cell proliferation compared to control mAb. Consistent with this finding, DC-SIGN-specific mAb were rapidly internalized upon binding and found in intracellular vesicles. These results strongly argue that DC-SIGN-specific mAb are channeled into the MHC class II presentation pathway. Thus, DC-SIGN could be an efficient target for antibody-mediated delivery of T cell epitopes in vaccine development.

摘要

在疫苗研发中,一个主要目标是诱导强烈的特异性T细胞反应。这可以通过将抗原靶向细胞表面分子来实现,这些分子能有效地将抗原导入内吞小室以加载MHC分子。抗体已被用于递送抗原;然而,确定抗原呈递细胞(APC)上的最佳靶点以实现高效递送很重要。为此,我们建立了一种T细胞读数方法,可用于筛选大量不同的单克隆抗体(mAb),以检测它们加载MHC II类分子的能力。这种新型的人类CD4+ T细胞克隆对小鼠Ig C κ(40 - 48)具有特异性,并受HLA - DR4(DRA1,B1*0401)限制。DR4显然能呈递小鼠和人类的C κ 40 - 48,但在T细胞水平上不存在交叉反应。来自DR4转基因小鼠的B细胞能自发加工并呈递小鼠C κ肽。利用小鼠C κ特异性T细胞读数方法证明,针对人类树突状细胞(DC)特异性的ICAM抓取非整合素(DC - SIGN,一种新型的DC特异性分子)的小鼠单克隆抗体,与对照单克隆抗体相比,在诱导κ特异性人类CD4+ T细胞增殖方面的效力要高10至1000倍。与这一发现一致的是,DC - SIGN特异性单克隆抗体在结合后会迅速内化,并出现在细胞内囊泡中。这些结果有力地表明,DC - SIGN特异性单克隆抗体被导入了MHC II类呈递途径。因此,在疫苗研发中,DC - SIGN可能是抗体介导递送T细胞表位的一个有效靶点。

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