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首页> 外文期刊>Immunology: An Official Journal of the British Society for Immunology >Indirect presentation in the thymus limits naive and regulatory T‐cell differentiation by promoting deletion of self‐reactive thymocytes
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Indirect presentation in the thymus limits naive and regulatory T‐cell differentiation by promoting deletion of self‐reactive thymocytes

机译:胸腺中间接呈现通过促进自活性胸腺细胞的缺失来限制幼稚和调节的T细胞分化

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摘要

Summary Acquisition of T‐cell central tolerance involves distinct pathways of self‐antigen presentation to thymocytes. One pathway termed indirect presentation requires a self‐antigen transfer step from thymic epithelial cells (TECs) to bone marrow‐derived cells before the self‐antigen is presented to thymocytes. The role of indirect presentation in central tolerance is context‐dependent, potentially due to variation in self‐antigen expression, processing and presentation in the thymus. Here, we report experiments in mice in which TECs expressed a membrane‐bound transgenic self‐antigen, hen egg lysozyme (HEL), from either the insulin (insHEL) or thyroglobulin (thyroHEL) promoter. Intrathymic HEL expression was less abundant and more confined to the medulla in insHEL mice compared with thyroHEL mice. When indirect presentation was impaired by generating mice lacking MHC class II expression in bone marrow‐derived antigen‐presenting cells, insHEL‐mediated thymocyte deletion was abolished, whereas thyroHEL‐mediated deletion occurred at a later stage of thymocyte development and Foxp3 + regulatory T‐cell differentiation increased. Indirect presentation increased the strength of T‐cell receptor signalling that both self‐antigens induced in thymocytes, as assessed by Helios expression. Hence, indirect presentation limits the differentiation of naive and regulatory T cells by promoting deletion of self‐reactive thymocytes.
机译:发明内容获取T细胞中央耐受性涉及对胸腺细胞的自抗原呈现的明显途径。将一个途径所谓的间接呈递需要从胸腺上皮细胞(TECS)到骨髓衍生细胞之前的自抗原转移步骤,然后呈现自抗原呈胸腺细胞。间接呈现在中心耐受的作用是依赖于上下文依赖性的,可能是由于胸腺中的自抗原表达,加工和呈现的变化。在此,我们报告小鼠的实验,其中TECS表达膜结合的转基因自抗原,来自胰岛素(INSHEL)或甲状腺蛋白(甲状腺素)启动子的脑蛋溶菌酶(HEL)。与甲状腺小鼠相比,肿瘤内的HE1表达较少,局限于Inshel小鼠中的髓质。当通过在骨髓衍生的抗原呈递细胞中产生缺乏MHC II类表达的小鼠损害间接呈现时,废除了inshel介导的胸腺细胞缺失,而甲状腺介导的缺失发生在胸腺细胞发育的后期阶段和Foxp3 +调节器细胞分化增加。间接呈现增加了T细胞受体信号传导的强度,即由Helios表达评估的胸腺细胞中诱导的自抗原。因此,间接呈现通过促进自活性胸腺细胞的缺失来限制幼稚和调节性T细胞的分化。

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