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在成人胸腺中先天和适应性 αβT 细胞发育过程中,CCR4 和 CCR7 的差异需求。

Differential requirement for CCR4 and CCR7 during the development of innate and adaptive αβT cells in the adult thymus.

机构信息

Medical Research Council Centre for Immune Regulation, Institute for Biomedical Research, University of Birmingham, Birmingham B15 2TT, United Kingdom;

Centre de Recherche en Cancérologie de Marseille, Institut Paoli-Calmettes, INSERM Unité Mixte de Recherche 1068, Centre National de la Recherche Scientifique Unité Mixte de Recherche 7258, Aix-Marseille University, UM 105, F-13009 Marseille, France; and.

出版信息

J Immunol. 2014 Aug 1;193(3):1204-12. doi: 10.4049/jimmunol.1400993. Epub 2014 Jul 2.

Abstract

αβT cell development depends upon serial migration of thymocyte precursors through cortical and medullary microenvironments, enabling specialized stromal cells to provide important signals at specific stages of their development. Although conventional αβT cells are subject to clonal deletion in the medulla, entry into the thymus medulla also fosters αβT cell differentiation. For example, during postnatal periods, the medulla is involved in the intrathymic generation of multiple αβT cell lineages, notably the induction of Foxp3(+) regulatory T cell development and the completion of invariant NKT cell development. Although migration of conventional αβT cells to the medulla is mediated by the chemokine receptor CCR7, how other T cell subsets gain access to medullary areas during their normal development is not clear. In this study, we show that combining a panel of thymocyte maturation markers with cell surface analysis of CCR7 and CCR4 identifies distinct stages in the development of multiple αβT cell lineages in the thymus. Although Aire regulates expression of the CCR4 ligands CCL17 and CCL22, we show that CCR4 is dispensable for thymocyte migration and development in the adult thymus, demonstrating defective T cell development in Aire(-/-) mice is not because of a loss of CCR4-mediated migration. Moreover, we reveal that CCR7 controls the development of invariant NKT cells by enabling their access to IL-15 trans-presentation in the thymic medulla and influences the balance of early and late intrathymic stages of Foxp3(+) regulatory T cell development. Collectively, our data identify novel roles for CCR7 during intrathymic T cell development, highlighting its importance in enabling multiple αβT cell lineages to access the thymic medulla.

摘要

αβT 细胞的发育依赖于胸腺细胞前体通过皮质和髓质微环境的连续迁移,使专门的基质细胞能够在其发育的特定阶段提供重要信号。尽管传统的αβT 细胞在髓质中受到克隆删除的影响,但进入胸腺髓质也促进了αβT 细胞的分化。例如,在出生后时期,髓质参与了多个αβT 细胞谱系的胸腺内生成,特别是诱导 Foxp3(+)调节性 T 细胞的发育和完成不变自然杀伤 T 细胞的发育。尽管传统的αβT 细胞向髓质的迁移是由趋化因子受体 CCR7 介导的,但其他 T 细胞亚群在正常发育过程中如何进入髓质区域尚不清楚。在这项研究中,我们表明,结合一组胸腺细胞成熟标志物和 CCR7 和 CCR4 的细胞表面分析,可以确定胸腺中多个αβT 细胞谱系发育的不同阶段。尽管 Aire 调节 CCR4 配体 CCL17 和 CCL22 的表达,但我们表明 CCR4 对于成年胸腺中的胸腺细胞迁移和发育是不必要的,这表明 Aire(-/-) 小鼠中的 T 细胞发育缺陷不是因为 CCR4 介导的迁移丧失。此外,我们揭示了 CCR7 通过允许其进入胸腺髓质中的 IL-15 转呈递来控制不变自然杀伤 T 细胞的发育,并影响早期和晚期 Foxp3(+)调节性 T 细胞发育的胸腺内阶段的平衡。总的来说,我们的数据确定了 CCR7 在胸腺内 T 细胞发育过程中的新作用,强调了其在使多个αβT 细胞谱系进入胸腺髓质中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e32/4105241/1190f3638a85/JI_1400993_f1.jpg

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