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</script>Intracellular signaling required for CCL25-stimulated T cell adhesion mediated by the integrin α4β1
Intracellular signaling required for CCL25-stimulated T cell adhesion mediated by the integrin α4β1
AbstractThe α4β1 integrin is expressed on thymocytes and mediates cell attachment to its ligands CS-1/fibronectin (CS-1/FN) and VCAM-1 in the thymus. The chemokine CCL25 is highly expressed in the thymus, where it binds to its receptor CCR9 on thymocytes promoting migration and activation. We show here that α4β1 and CCR9 are coexpressed mainly on double- and single-positive thymocytes and that CCL25 strongly stimulates CD4+CD8+ and CD4+CD8− adhesion to CS-1/FN and VCAM-1. CCL25 rapidly activated the GTPases Rac and Rap1 on thymocytes, and this activation was required for stimulation of adhesion, as detected using the CCR9+/α4β1+ human T cell line Molt-4. To study the role on CCL25-stimulated adhesion of the Rac downstream effector Wiskott-Aldrich syndrome protein family verproline-homologous protein 2 (WAVE2) as well as of Rap1-GTP-interacting proteins, regulator of adhesion and cell polarization enriched in lymphoid tissues (RAPL) and Rap1-GTP-interacting adapter molecule (RIAM), we knocked down their expression and tested transfectant attachment to α4β1 ligands. We found that WAVE2 and RAPL but not RIAM were required for efficient triggering by CCL25 of T cell adhesion to CS-1/FN and VCAM-1. Although Rac and Rap1 activation was required during early steps of T cell adhesion stimulated by CCL25, WAVE2 was needed for the development of actin-dependent T cell spreading subsequent to adhesion strengthening but not during initial α4β1-ligand interactions. These results suggest that regulation by CCL25 of adhesion of thymocyte subpopulations mediated by α4β1 could contribute to control their trafficking in the thymus during maturation, and identify Rac-WAVE2 and Rap1-RAPL as pathways whose activation is required in inside-out signaling, leading to stimulated adhesion.
Mice, Inbred BALB C, T-Lymphocytes, Thymus Gland, Integrin alpha4beta1, Transfection, Models, Biological, Mice, Chemokine, fibronectin, Chemokines, CC, Cell Adhesion, Animals, Humans, RNA Interference, Cells, Cultured, Signal Transduction
Mice, Inbred BALB C, T-Lymphocytes, Thymus Gland, Integrin alpha4beta1, Transfection, Models, Biological, Mice, Chemokine, fibronectin, Chemokines, CC, Cell Adhesion, Animals, Humans, RNA Interference, Cells, Cultured, Signal Transduction
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