Orphan GPR84 facilitates uropod de-adhesion to terminate leukocyte diapedesis during inflammation
Latta, C.; Trinca, T. M.; Robertson, F.; Lau, R.; Barkaway, A.; Rolas, L.; Golding, M.; Imbert, P. R.; Wang, H.; Bader, A.; Hill, L. S.; Hodgson, L.; Walzog, B.; Lewis, M.; Voisin, M. B.; Martin, P.; Nourshargh, S.; Weavers, H.
Show abstract
Leukocyte migration through venular walls is an essential component of effective immunity. While the key molecular players driving the initial steps of this response are known, the terminating signals remain unclear. Here, we have identified a conserved role for GPR84 family GPCRs in successful completion of the final stages of leukocyte extravasation through acutely inflamed vessels. The integration of high resolution intravital imaging with cell-specific genetics revealed that genetic deficiency of GPR84 orthologues in mice and Drosophila, results in defective detachment of transmigrating immune cells from vessel walls. Mechanistically, transcriptomics revealed GPR84-deficient neutrophils exhibit defective actin cytoskeletal regulation and cellular adhesion/de-adhesion. Consistent with this, our fly-murine pipeline shows that GPR84 supports localized and dynamic Rho activation to enable detachment of the immune cell uropod from vessel exit sites. Moreover, pharmacological blockade of GPR84 signaling dampened immune cell migration in multiple murine acute inflammatory settings. Collectively, our findings present GPR84 as a novel physiological regulator of immune cell extravasation that is amenable to therapeutic targeting for modulating leukocyte infiltration into inflamed tissues. SummaryHere we identify the GPR84 family of GPCRs as key regulators of effective immune cell extravasation in vivo. Mechanistically, through integrating genetically tractable Drosophila and murine in vivo models, we show how leukocyte GPR84 supports dynamic Rho-dependent detachment of stretched uropods as these cells exit vessels.
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