Myeloid Src-family kinases are critical for neutrophil-mediated autoinflammation in gout and motheaten models

Author:

Futosi Krisztina12ORCID,Németh Tamás1345ORCID,Horváth Ádám I.6ORCID,Abram Clare L.7ORCID,Tusnády Simon1ORCID,Lowell Clifford A.7ORCID,Helyes Zsuzsanna68ORCID,Mócsai Attila12ORCID

Affiliation:

1. Department of Physiology, School of Medicine, Semmelweis University 1 , Budapest, Hungary

2. ELKH-SE Inflammation Physiology Research Group, Eötvös Loránd Research Network and Semmelweis University 2 , Budapest, Hungary

3. MTA-SE “Lendület” Translational Rheumatology Research Group, Hungarian Academy of Sciences and Semmelweis University 3 , Budapest, Hungary

4. Department of Rheumatology and Clinical Immunology, Semmelweis University 4 , Budapest, Hungary

5. Department of Internal Medicine and Oncology, Semmelweis University 5 , Budapest, Hungary

6. Department of Pharmacology and Pharmacotherapy, Medical School and János Szentágothai Research Centre, Centre for Neuroscience, University of Pécs 6 , Pécs, Hungary

7. Department of Laboratory Medicine, University of California, San Francisco 7 , San Francisco, CA, USA

8. PharmInVivo Ltd. 8 , Pécs, Hungary

Abstract

Autoinflammatory diseases include a number of monogenic systemic inflammatory diseases, as well as acquired autoinflammatory diseases such as gout. Here, we show that the myeloid Src-family kinases Hck, Fgr, and Lyn are critical for experimental models of gout, as well as for genetically determined systemic inflammation in the Ptpn6me-v/me-v (motheaten viable) mouse model. The Hck−/−Fgr−/−Lyn−/− mutation abrogated various monosodium urate (MSU) crystal–induced pro-inflammatory responses of neutrophils, and protected mice from the development of gouty arthritis. The Src-family inhibitor dasatinib abrogated MSU crystal–induced responses of human neutrophils and reduced experimental gouty arthritis in mice. The Hck−/−Fgr−/−Lyn−/− mutation also abrogated spontaneous inflammation and prolonged the survival of the Ptpn6me-v/me-v mice. Spontaneous adhesion and superoxide release of Ptpn6me-v/me-v neutrophils were also abolished by the Hck−/−Fgr−/−Lyn−/− mutation. Excessive activation of tyrosine phosphorylation pathways in myeloid cells may characterize a subset of autoinflammatory diseases.

Funder

Hungarian Ministry of National Economy

Hungarian National Research, Development and Innovation Fund

European Social Fund

European Union

Magyar Tudományos Akadémia

Innovációs és Technológiai Minisztérium

National Brain Research Program

Hungarian National Academy of Scientist Education

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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