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小鼠内皮细胞通过TAP1和蛋白酶体依赖性途径在I类主要组织相容性复合体(MHC)上交叉提呈淋巴细胞衍生抗原。

Mouse endothelial cells cross-present lymphocyte-derived antigen on class I MHC via a TAP1- and proteasome-dependent pathway.

作者信息

Bagai Rakesh, Valujskikh Anna, Canaday David H, Bailey Erin, Lalli Peter N, Harding Clifford V, Heeger Peter S

机构信息

Department of Immunology, Cleveland Clinic Foundation, Cleveland, OH 44195, USA.

出版信息

J Immunol. 2005 Jun 15;174(12):7711-5. doi: 10.4049/jimmunol.174.12.7711.

Abstract

In vivo studies suggest that vascular endothelial cells (ECs) can acquire and cross-present exogenous Ag on MHC-I but the cellular mechanisms underlying this observation remain unknown. We tested whether primary female mouse aortic ECs could cross-present exogenous male Ag to the T cell hybridoma, MHH, specific for HYUty plus D(b). MHC-I-deficient male spleen cells provided a source of male Ag that could not directly stimulate the MHH cells. Addition of male but not female MHC-I-deficient spleen cells to wild-type syngeneic female EC induced MHH stimulation, demonstrating EC cross-presentation. Lactacystin treatment of the donor male MHC-I-deficient spleen cells, to inhibit proteasome function, markedly enhanced EC cross-presentation showing that the process is most efficient for intact proteins rather than degraded peptide fragments. Additional experiments revealed that this EC Ag-processing pathway is both proteasome and TAP1 dependent. These studies demonstrate that cultured murine aortic ECs can process and present MHC-I-restricted Ag derived from a separate, live cell, and they offer insight into the molecular requirements involved in this EC Ag presentation process. Through this pathway, ECs expressing cross-presented peptides can participate in the effector phase of T cell-mediated inflammatory responses such as autoimmunity, anti-tumor immunity, and transplant rejection.

摘要

体内研究表明,血管内皮细胞(ECs)能够获取并在MHC-I上交叉呈递外源性抗原,但这一现象背后的细胞机制仍不清楚。我们测试了原代雌性小鼠主动脉ECs是否能够将外源性雄性抗原交叉呈递给对HYUty加D(b)特异的T细胞杂交瘤MHH。MHC-I缺陷的雄性脾细胞提供了一种不能直接刺激MHH细胞的雄性抗原来源。将雄性而非雌性MHC-I缺陷脾细胞添加到同基因野生型雌性EC中可诱导MHH刺激,证明了EC的交叉呈递。用乳胞素处理供体雄性MHC-I缺陷脾细胞以抑制蛋白酶体功能,可显著增强EC的交叉呈递,表明该过程对完整蛋白质而非降解的肽片段最为有效。进一步的实验表明,这种EC抗原加工途径既依赖蛋白酶体又依赖TAP1。这些研究证明,培养的小鼠主动脉ECs能够加工并呈递来自另一个活细胞的MHC-I限制性抗原,并且它们为这一EC抗原呈递过程中涉及的分子要求提供了见解。通过这一途径,表达交叉呈递肽的ECs能够参与T细胞介导的炎症反应的效应阶段,如自身免疫、抗肿瘤免疫和移植排斥反应。

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