School of Biological Sciences and Technology, Chonnam National University, Gwangju, South Korea.
Deagu-Gyeongbuk Medical Innovation Foundation, Daegu, South Korea.
FASEB J. 2019 Dec;33(12):13386-13397. doi: 10.1096/fj.201901356R. Epub 2019 Sep 25.
Gut-homing γδ T cells are induced by chemokines and cell adhesion molecules and play a critical role in homeostasis and mucosal immunity; however, little is known regarding their upstream regulators. We investigated the role of Axl as a specific regulator of chemokines and cell adhesion molecule in the distribution of intestinal γδ T cells. The population of γδ T-cell receptor-positive cells including Vγ1 and Vγ7 subsets was remarkably increased in the intraepithelial lymphocytes of Axl mice compared with those of wild-type (WT) mice. An increased number of migrated γδ T cells were observed in the coculture with intraepithelial cells from Axl mice. The mRNA expression level of chemokine (C-C motif) ligand (CCL) 25 was specifically higher in the small intestine of Axl mice than in WT mice. In adoptive transfer, the migration of both thymic and extrathymic γδ T cells was increased in Axl mice. The activation of Axl signaling down-regulated CCL25 expression ERK signaling pathway and reduced the population of γδ T cells. Systemic dissemination was suppressed in Axl mice infected with . Thus, our findings suggest that Axl plays a critical role in regulating the migration of γδ T cells for the maintenance of homeostasis and bacterial resistance.-Kim, S.-M., Park, M., Yee, S.-M., Ji, K.-Y., Lee, E.-H., Nguyen, T.-V., Nguyen, T. H.-L., Jang, J., Kim, E.-M., Choi, H.-R., Yun, C.-H., Kang, H.-S. Axl is a key regulator of intestinal γδ T-cell homeostasis.
肠道归巢 γδ T 细胞受趋化因子和细胞黏附分子诱导,在维持体内平衡和黏膜免疫中发挥关键作用;然而,其上游调节因子知之甚少。我们研究了 Axl 作为趋化因子和细胞黏附分子在肠道 γδ T 细胞分布中的特异性调节因子的作用。与野生型(WT)小鼠相比,Axl 小鼠的上皮内淋巴细胞中 γδ T 细胞受体阳性细胞(包括 Vγ1 和 Vγ7 亚群)的数量显著增加。与 Axl 小鼠的上皮内细胞共培养时,观察到迁移的 γδ T 细胞数量增加。Axl 小鼠小肠中趋化因子(C-C 基序)配体(CCL)25 的 mRNA 表达水平明显高于 WT 小鼠。在过继转移中,Axl 小鼠中胸腺内和胸腺外 γδ T 细胞的迁移均增加。Axl 信号通路的激活下调 CCL25 表达和 ERK 信号通路,减少 γδ T 细胞的数量。感染时,Axl 小鼠的全身播散受到抑制。因此,我们的研究结果表明,Axl 在调节 γδ T 细胞的迁移以维持体内平衡和细菌抵抗方面发挥关键作用。