Soluble Signal Inhibitory Receptor on Leukocytes-1 Is Released from Activated Neutrophils by Proteinase 3 Cleavage

Author:

von Richthofen Helen J.12ORCID,Westerlaken Geertje H.A.12,Gollnast Doron12,Besteman Sjanna13,Delemarre Eveline M.1,Rodenburg Karlijn1,Moerer Petra1,Stapels Daphne A.C.4ORCID,Andiappan Anand K.5ORCID,Rötzschke Olaf5,Nierkens Stefan1,Leavis Helen L.16,Bont Louis J.13,Rooijakkers Suzan H.M.4ORCID,Meyaard Linde12ORCID

Affiliation:

1. *Center of Translational Immunology, University Medical Center Utrecht, Utrecht University, Utrecht, the Netherlands;

2. †Oncode Institute, Utrecht, the Netherlands;

3. ‡Department of Pediatrics, Wilhelmina Children’s Hospital, University Medical Center Utrecht, Utrecht, the Netherlands;

4. §Department of Medical Microbiology, University Medical Center Utrecht, Utrecht University, Utrecht, the Netherlands;

5. ¶Singapore Immunology Network, Agency for Science, Technology and Research, Singapore; and

6. ‖Department of Rheumatology and Clinical Immunology, University Medical Center Utrecht, Utrecht University, Utrecht, the Netherlands

Abstract

Abstract Signal inhibitory receptor on leukocytes-1 (SIRL-1) is an immune inhibitory receptor expressed on human granulocytes and monocytes that dampens antimicrobial functions. We previously showed that sputum neutrophils from infants with severe respiratory syncytial virus (RSV) bronchiolitis have decreased SIRL-1 surface expression compared with blood neutrophils and that SIRL-1 surface expression is rapidly lost from in vitro activated neutrophils. This led us to hypothesize that activated neutrophils lose SIRL-1 by ectodomain shedding. Here, we developed an ELISA and measured the concentration of soluble SIRL-1 (sSIRL-1) in patients with RSV bronchiolitis and hospitalized patients with COVID-19, which are both characterized by neutrophilic inflammation. In line with our hypothesis, sSIRL-1 concentration was increased in sputum compared with plasma of patients with RSV bronchiolitis and in serum of hospitalized patients with COVID-19 compared with control serum. In addition, we show that in vitro activated neutrophils release sSIRL-1 by proteolytic cleavage and that this diminishes the ability to inhibit neutrophilic reactive oxygen species production via SIRL-1. Finally, we found that SIRL-1 shedding is prevented by proteinase 3 inhibition and by extracellular adherence protein from Staphylococcus aureus. Notably, we recently showed that SIRL-1 is activated by PSMα3 from S. aureus, suggesting that S. aureus may counteract SIRL-1 shedding to benefit from preserved inhibitory function of SIRL-1. In conclusion, we report that SIRL-1 is released from activated neutrophils by proteinase 3 cleavage and that endogenous sSIRL-1 protein is present in vivo.

Funder

Nederlandse Organisatie voor Wetenschappelijk Onderzoek

ZonMw

Publisher

The American Association of Immunologists

Subject

Immunology,Immunology and Allergy

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