首页> 外文期刊>The Journal of Experomental Medicine >Cooperating Mechanisms of CXCR5 and CCR7 in Development and Organization of Secondary Lymphoid Organs
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Cooperating Mechanisms of CXCR5 and CCR7 in Development and Organization of Secondary Lymphoid Organs

机译:CXCR5和CCR7在次级淋巴器官发育和组织中的合作机制。

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Homeostatic chemokines participate in the development of secondary lymphoid organs and later on in the functional organization of these tissues. The development of lymph nodes (LNs) and Peyer's patches depends on the recruitment of CD3? CD4+ interleukin (IL)-7Rαhi cells to sites of future organ development. CD3? CD4+ IL-7Rαhi cells express the chemokine receptor CXCR5 and might be attracted by its ligand CXCL13, which is secreted by mesenchymal cells. Mesenchymal cells also secrete CCL19, a ligand for CCR7, yet it is not clear whether CCR7 and CCL19 are important for secondary lymphoid organ development. Analyzing CXCR5?/? CCR7?/? double deficient mice we now show that these mice lack all examined peripheral LNs suggesting a profound role for both receptors in secondary lymphoid organ development. We demonstrate that CD3? CD4+ IL-7Rαhi cells express CXCR5 as well as CCR7 indicating that both receptors cooperate during an early step of secondary lymphoid organ development. Furthermore, CXCR5?/? CCR7?/? mice display a severely disturbed architecture of mesenteric LN and spleen. Due to an impaired migration of B cells into the white pulp, CXCR5?/? CCR7?/? mice fail to develop B cell follicles but show small clusters of unorganized lymphocytes in the spleen. These data demonstrate a cooperative function of CXCR5 and CCR7 in lymphoid organ organogenesis and organization.
机译:稳态趋化因子参与次级淋巴器官的发育,随后参与这些组织的功能组织。淋巴结(LNs)和淋巴集结的发展取决于CD3的募集? CD4 +白介素(IL)-7Rαhi细胞到达未来器官发育的部位。 CD3? CD4 +IL-7Rαhi细胞表达趋化因子受体CXCR5,并可能被其间充质细胞分泌的配体CXCL13吸引。间充质细胞还分泌CCL19(CCR7的配体),但尚不清楚CCR7和CCL19对继发性淋巴器官发育是否重要。正在分析CXCR5? CCR7?/?双重缺陷小鼠,我们现在显示这些小鼠缺乏所有检查过的外周LN,表明这两种受体在继发性淋巴器官发育中都起着重要作用。我们演示CD3吗? CD4 +IL-7Rαhi细胞表达CXCR5和CCR7,表明两种受体在继发性淋巴器官发育的早期过程中协同作用。此外,CXCR5?/? CCR7?/?小鼠的肠系膜LN和脾脏结构受到严重干扰。由于B细胞迁移到白色果肉中的障碍,CXCR5α/β。 CCR7?/?小鼠未能发育出B细胞滤泡,但在脾脏中显示出小的簇无组织淋巴细胞。这些数据证明了CXCR5和CCR7在淋巴器官器官发生和组织中的协同功能。

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