SOS1, ARHGEF1, and DOCK2 rho-GEFs Mediate JAK-Dependent LFA-1 Activation by Chemokines
Lara Toffali1,2, Alessio Montresor1,2, Michela Mirenda1
1Department of Medicine, University of Verona, Verona 37134, Italy.
Abstract:
JAK-dependent activation of the rho module of integrin affinity triggering mediates chemokine-induced leukocyte adhesion. However, the signaling events linking JAKs to rho small GTPase activation by chemokines is still incompletely described. In this study, we show that son of sevenless 1 (SOS1), rho guanine nucleotide exchange factor (GEF)1 (ARHGEF1), and dedicator of cytokinesis (DOCK)2 GEFs mediate CXCL12-induced LFA-1 activation in human primary T lymphocytes. Downregulated expression of SOS1, ARHGEF1, and DOCK2 impairs LFA-1-mediated rapid T lymphocyte adhesion as well as underflow arrest on ICAM-1 induced by CXCL12. Moreover, LFA-1 affinity triggering by CXCL12 is impaired by SOS1, ARHGEF1, and DOCK2 downregulation. Notably, the three GEFs are all critically involved in chemokine-induced RhoA and Rac1 activation, thus suggesting the occurrence of a SOS1 specificity shift in the context of chemokine signaling. Accordingly, SOS1, ARHGEF1, and DOCK2 are tyrosine phosphorylated upon chemokine signaling with timing coherent with rapid LFA-1 affinity activation. Importantly, chemokine-induced tyrosine phosphorylation of these GEFs is fully mediated by JAK protein tyrosine kinases. Unexpectedly, and differently from VAV1, tyrosine phosphorylation of SOS1, ARHGEF1, and DOCK2 is completely inhibited by pertussis toxin pretreatment, thus suggesting different routes of rho-GEF triggering upon CXCR4 engagement. Taken together, these findings reveal a deeper level of complexity in the rho-signaling module, with at least four different rho-GEFs cooperating in the regulation of chemokine-induced integrin activation, possibly suggesting the emergence of stochastic concurrency in signaling mechanisms controlling leukocyte trafficking.
Insights
This study reveals how Son of Sevenless 1 (SOS1), ARHGEF1, and Dedicator of Cytokinesis 2 (DOCK2) activate integrin LFA-1 in T lymphocytes during chemokine signaling, mediated by JAK kinases.
Area of Science:
- Immunology
- Cell Biology
- Molecular Signaling
Background:
- Chemokine-induced leukocyte adhesion relies on integrin activation.
- The precise signaling pathways connecting JAK kinases to Rho GTPase activation in response to chemokines remain unclear.
Purpose of the Study:
- To elucidate the signaling molecules involved in chemokine-induced T lymphocyte adhesion.
- To investigate the roles of specific guanine nucleotide exchange factors (GEFs) in integrin LFA-1 activation.
Main Methods:
- Utilized human primary T lymphocytes.
- Investigated the effects of downregulating SOS1, ARHGEF1, and DOCK2.
- Analyzed RhoA and Rac1 activation.
- Examined tyrosine phosphorylation of GEFs upon chemokine stimulation.
- Assessed the impact of pertussis toxin pretreatment.
Main Results:
- SOS1, ARHGEF1, and DOCK2 mediate CXCL12-induced LFA-1 activation in T lymphocytes.
- Downregulation of these GEFs impairs T lymphocyte adhesion and underflow arrest.
- These GEFs are crucial for chemokine-induced RhoA and Rac1 activation.
- JAK kinases mediate the tyrosine phosphorylation of SOS1, ARHGEF1, and DOCK2.
- Pertussis toxin inhibits GEF tyrosine phosphorylation, suggesting distinct signaling routes.
Conclusions:
- A complex rho-signaling module involving at least four GEFs regulates chemokine-induced integrin activation.
- These findings highlight cooperative mechanisms in leukocyte trafficking control.
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