A central role for DOCK2 during interstitial lymphocyte motility and sphingosine-1-phosphate-mediated egress

César Nombela-Arrieta1, Thorsten R Mempel, Silvia F Soriano

  • 1Theodor Kocher Institute, University of Bern, CH-3012 Bern, Switzerland.

Insights

The study reveals that DOCK2 is crucial for lymphocyte movement within lymph nodes and their exit. PI3Kgamma also plays a role in T cell signaling and actin polymerization, impacting lymphocyte egress.

Area of Science:

  • Immunology
  • Cell Biology
  • Microscopy

Background:

  • Lymphocyte motility within peripheral lymph nodes (PLNs) is high but poorly understood.
  • Intracellular signaling molecules controlling lymphocyte interstitial movement are largely unknown.

Purpose of the Study:

  • To investigate the roles of DOCK2 and phosphoinositide-3-kinase (PI3K)gamma in lymphocyte interstitial migration and egress from PLNs.
  • To examine how these signaling molecules, downstream of G protein-coupled receptors, influence lymphocyte behavior.

Main Methods:

  • Multiphoton intravital microscopy (MP-IVM) of murine PLNs.
  • Analysis of lymphocyte motility in cells lacking DOCK2 and/or PI3Kgamma.
  • Assessment of sphingosine-1-phosphate (S1P)-triggered signaling and cell migration.

Main Results:

  • T and B cells lacking DOCK2 showed significantly reduced interstitial motility.
  • PI3Kgamma deficiency alone did not affect migration velocity but increased T cell turning angles.
  • DOCK2 deficiency impaired S1P-induced migration and delayed lymphocyte egress from PLNs.
  • T cell PI3Kgamma influenced F-actin polymerization and Akt phosphorylation but not migration.

Conclusions:

  • DOCK2 is essential for interstitial lymphocyte migration and S1P-mediated egress from PLNs.
  • T cell-expressed PI3Kgamma contributes to lymphocyte migration signaling and egress.
  • These findings elucidate key signaling pathways governing lymphocyte trafficking within lymphoid organs.

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