首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >FoxP3+ T cells undergo conventional first switch to lymphoid tissue homing receptors in thymus but accelerated second switch to nonlymphoid tissue homing receptors in secondary lymphoid tissues.
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FoxP3+ T cells undergo conventional first switch to lymphoid tissue homing receptors in thymus but accelerated second switch to nonlymphoid tissue homing receptors in secondary lymphoid tissues.

机译:FoxP3 + T细胞在胸腺中经历常规的第一转换为淋巴组织归巢受体,但在第二次淋巴组织中则加速了第二转换为非淋巴组织归巢受体。

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摘要

Forkhead box P3 (FoxP3)-positive T cells are a specialized T cell subset for immune regulation and tolerance. We investigated the trafficking receptor switches of FoxP3(+) T cells in thymus and secondary lymphoid tissues and the functional consequences of these switches in migration. We found that FoxP3(+) T cells undergo two discrete developmental switches in trafficking receptors to migrate from primary to secondary and then to nonlymphoid tissues in a manner similar to conventional CD4(+) T cells as well as unique to the FoxP3(+) cell lineage. In the thymus, precursors of FoxP3(+) cells undergo the first trafficking receptor switch (CCR8/CCR9-->CXCR4-->CCR7), generating mostly homogeneous CD62L(+)CCR7(+)CXCR4(low)FoxP3(+) T cells. CXCR4 expression is regained in FoxP3(+) thymic emigrants in the periphery. Consistent with this switch, recent FoxP3(+) thymic emigrants migrate exclusively to secondary lymphoid tissues but poorly to nonlymphoid tissues. The FoxP3(+) thymic emigrants undergo the second switch in trafficking receptors for migration to nonlymphoid tissues upon Ag priming. This second switch involves down-regulation of CCR7 and CXCR4 but up-regulation of a number of memory/effector type homing receptors, resulting in generation of heterogeneous FoxP3(+) T cell subsets expressing various combinations of trafficking receptors including CCR2, CCR4, CCR6, CCR8, and CCR9. A notable difference between the FoxP3(+) and FoxP3(-) T cell populations is that FoxP3(+) T cells undergo the second homing receptor switch at a highly accelerated rate compared with FoxP3(-) T cells, generating FoxP3(+) T cells with unconventionally efficient migratory capacity to major nonlymphoid tissues.
机译:叉头盒P3(FoxP3)阳性T细胞是专门的T细胞亚群,可用于免疫调节和耐受。我们调查了胸腺和次级淋巴组织中FoxP3(+)T细胞的运输受体开关以及这些开关在迁移中的功能后果。我们发现,FoxP3(+)T细胞在运输受体中经历了两个离散的发育转换,以类似于常规CD4(+)T细胞以及FoxP3(+)独特的方式从原发性迁移至继发性,然后迁移至非淋巴组织。细胞谱系。在胸腺中,FoxP3(+)细胞的前体经历了第一个运输受体转换(CCR8 / CCR9-> CXCR4-> CCR7),生成了大部分均质的CD62L(+)CCR7(+)CXCR4(low)FoxP3(+) T细胞。在外围的FoxP3(+)胸腺迁徙者中重新获得CXCR4表达。与此开关一致,最近的FoxP3(+)胸腺迁徙者专门迁移到次级淋巴组织,但很难迁移到非淋巴组织。 Fox激发胸腺的FoxP3(+)经历了第二次开关反应,即在Ag引发后迁移到非淋巴组织。第二个开关涉及CCR7和CXCR4的下调,但许多记忆/效应型归巢受体的上调,导致产生异种的FoxP3(+)T细胞亚群,表达表达包括CCR2,CCR4,CCR6在内的各种运输受体组合,CCR8和CCR9。 FoxP3(+)和FoxP3(-)T细胞群体之间的显着差异是,与FoxP3(-)T细胞相比,FoxP3(+)T细胞以较高的加速速率经历了第二个归巢受体转换,从而产生了FoxP3(+)具有主要非淋巴组织非常规有效迁移能力的T细胞。

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