Soluble uric acid inhibits β2 integrin–mediated neutrophil recruitment in innate immunity

Author:

Ma Qiuyue1,Immler Roland2ORCID,Pruenster Monika2ORCID,Sellmayr Markus1,Li Chenyu1,von Brunn Albrecht3,von Brunn Brigitte3,Ehmann Rosina4,Wölfel Roman4,Napoli Matteo2,Li Qiubo1,Romagnani Paola5ORCID,Böttcher Ralph Thomas6ORCID,Sperandio Markus2ORCID,Anders Hans-Joachim1ORCID,Steiger Stefanie1ORCID

Affiliation:

1. 1Division of Nephrology, Department of Medicine IV, University Hospital, Ludwig-Maximilians-University (LMU) Munich, Munich, Germany;

2. 2Walter-Brendel-Center of Experimental Medicine, Institute of Cardiovascular Physiology and Pathophysiology, Biomedical Center, Ludwig-Maximilians-University (LMU) Munich, Munich, Germany;

3. 3Max von Pettenkofer-Institute, Ludwig-Maximilians-University (LMU) Munich and German Center for Infection Research (DZIF), Munich, Germany;

4. 4Bundeswehr Institute of Microbiology, Munich, Germany;

5. 5Department of Biomedical Experimental and Clinical Sciences “Maria Serio,” University of Florence, Florence, Italy; and

6. 6Department of Molecular Medicine, Max Planck Institute for Biochemistry, Martinsried, Germany

Abstract

Abstract Neutrophils are key players during host defense and sterile inflammation. Neutrophil dysfunction is a characteristic feature of the acquired immunodeficiency during kidney disease. We speculated that the impaired renal clearance of the intrinsic purine metabolite soluble uric acid (sUA) may account for neutrophil dysfunction. Indeed, hyperuricemia (HU, serum UA of 9-12 mg/dL) related or unrelated to kidney dysfunction significantly diminished neutrophil adhesion and extravasation in mice with crystal- and coronavirus-related sterile inflammation using intravital microscopy and an air pouch model. This impaired neutrophil recruitment was partially reversible by depleting UA with rasburicase. We validated these findings in vitro using either neutrophils or serum from patients with kidney dysfunction–related HU with or without UA depletion, which partially normalized the defective migration of neutrophils. Mechanistically, sUA impaired β2 integrin activity and internalization/recycling by regulating intracellular pH and cytoskeletal dynamics, physiological processes that are known to alter the migratory and phagocytic capability of neutrophils. This effect was fully reversible by blocking intracellular uptake of sUA via urate transporters. In contrast, sUA had no effect on neutrophil extracellular trap formation in neutrophils from healthy subjects or patients with kidney dysfunction. Our results identify an unexpected immunoregulatory role of the intrinsic purine metabolite sUA, which contrasts the well-known immunostimulatory effects of crystalline UA. Specifically targeting UA may help to overcome certain forms of immunodeficiency, for example in kidney dysfunction, but may enhance sterile forms of inflammation.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

Reference82 articles.

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