CD31 signaling promotes the detachment at the uropod of extravasating neutrophils allowing their migration to sites of inflammation

Author:

Andreata Francesco1,Clément Marc1ORCID,Benson Robert A2,Hadchouel Juliette3,Procopio Emanuele1,Even Guillaume1,Vorbe Julie1,Benadda Samira4,Ollivier Véronique1,Ho-Tin-Noe Benoit1,Le Borgne Marie1ORCID,Maffia Pasquale25ORCID,Nicoletti Antonino1,Caligiuri Giuseppina16ORCID

Affiliation:

1. Université Paris Cité and Université Sorbonne Paris Nord, INSERM, Laboratory for Vascular Translational Science (LVTS)

2. Centre for Immunobiology, Institute of Infection, Immunity and Inflammation, College of Medical, Veterinary and Life Sciences, University of Glasgow

3. Université Paris Cité, INSERM, Paris Cardiovascular Research Center (PARCC)

4. Cell and Tissue Imaging Platform, INSERM, CNRS, ERL8252, Centre de Recherche sur l’Inflammation (CRI)

5. Department of Pharmacy, School of Medicine and Surgery, University of Naples Federico II

6. Department of Cardiology and of Physiology, Assistance Publique-Hôpitaux de Paris (AP-HP), Hôpitaux Universitaires Paris Nord Val-de-Seine, Site Bichat

Abstract

Effective neutrophil migration to sites of inflammation is crucial for host immunity. A coordinated cascade of steps allows intravascular leukocytes to counteract the shear stress, transmigrate through the endothelial layer, and move toward the extravascular, static environment. Those events are tightly orchestrated by integrins, but, while the molecular mechanisms leading to their activation have been characterized, the regulatory pathways promoting their detachment remain elusive. In light of this, it has long been known that platelet-endothelial cell adhesion molecule (Pecam1, also known as CD31) deficiency blocks leukocyte transmigration at the level of the outer vessel wall, yet the associated cellular defects are controversial. In this study, we combined an unbiased proteomic study with in vitro and in vivo single-cell tracking in mice to study the dynamics and role of CD31 during neutrophil migration. We found that CD31 localizes to the uropod of migrating neutrophils along with closed β2-integrin and is required for essential neutrophil actin/integrin polarization. Accordingly, the uropod of Pecam1-/- neutrophils is unable to detach from the extracellular matrix, while antagonizing integrin binding to extracellular matrix components rescues this in vivo migratory defect. Conversely, we showed that sustaining CD31 co-signaling actively favors uropod detachment and effective migration of extravasated neutrophils to sites of inflammation in vivo. Altogether, our results suggest that CD31 acts as a molecular rheostat controlling integrin-mediated adhesion at the uropod of egressed neutrophils, thereby triggering their detachment from the outer vessel wall to reach the inflammatory sites.

Funder

MSDAVENIR

Agence Nationale de la Recherche

Engineering and Physical Sciences Research Council

British Heart Foundation

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference39 articles.

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4. Protection from septic peritonitis by rapid neutrophil recruitment through omental high endothelial venules;Buscher;Nature Communications,2016

5. Talins and kindlins: partners in integrin-mediated adhesion;Calderwood;Nature Reviews. Molecular Cell Biology,2013

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