Redox and Src family kinase signaling control leukocyte wound attraction and neutrophil reverse migration

Author:

Tauzin Sebastien1,Starnes Taylor W.1,Becker Francisco Barros11,Lam Pui-ying11,Huttenlocher Anna1

Affiliation:

1. Departments of Pediatrics and Medical Microbiology and Immunology, Microbiology Doctoral Training Program and Medical Scientist Training Program, Program in Cellular and Molecular Biology, University of Wisconsin-Madison, Madison, WI 53706

Abstract

Tissue damage induces early recruitment of neutrophils through redox-regulated Src family kinase (SFK) signaling in neutrophils. Redox-SFK signaling in epithelium is also necessary for wound resolution and tissue regeneration. How neutrophil-mediated inflammation resolves remains unclear. In this paper, we studied the interactions between macrophages and neutrophils in response to tissue damage in zebrafish and found that macrophages contact neutrophils and induce resolution via neutrophil reverse migration. We found that redox-SFK signaling through p22phox and Yes-related kinase is necessary for macrophage wound attraction and the subsequent reverse migration of neutrophils. Importantly, macrophage-specific reconstitution of p22phox revealed that macrophage redox signaling is necessary for neutrophil reverse migration. Thus, redox-SFK signaling in adjacent tissues is essential for coordinated leukocyte wound attraction and repulsion through pathways that involve contact-mediated guidance.

Publisher

Rockefeller University Press

Subject

Cell Biology

Reference32 articles.

1. Contact inhibition: the phenomenon and its biological implications;Abercrombie;Natl. Cancer Inst. Monogr.,1967

2. The diverse functions of Src family kinases in macrophages;Abram;Front. Biosci.,2008

3. Perivascular macrophages mediate neutrophil recruitment during bacterial skin infection;Abtin;Nat. Immunol.,2014

4. Regulation of phagocyte migration and recruitment by Src-family kinases;Baruzzi;Cell. Mol. Life Sci.,2008

5. Neutrophil clearance: when the party is over, clean-up begins;Bratton;Trends Immunol.,2011

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