Mutually exclusive redox forms of HMGB1 promote cell recruitment or proinflammatory cytokine release

Author:

Venereau Emilie1,Casalgrandi Maura2,Schiraldi Milena3,Antoine Daniel J.4,Cattaneo Angela1,De Marchis Francesco1,Liu Jaron5,Antonelli Antonella5,Preti Alessandro2,Raeli Lorenzo3,Shams Sara Samadi5,Yang Huan6,Varani Luca3,Andersson Ulf7,Tracey Kevin J.6,Bachi Angela1,Uguccioni Mariagrazia3,Bianchi Marco E.15

Affiliation:

1. Division of Genetics and Cell Biology, San Raffaele Scientific Institute, 20132 Milan, Italy

2. HMGBiotech Srl, 20133 Milan, Italy

3. Institute for Research in Biomedicine, CH-6500 Bellinzona, Switzerland

4. Medical Research Council Centre for Drug Safety Science, Department of Molecular and Clinical Pharmacology, University of Liverpool, Liverpool L69 3BX, England, UK

5. San Raffaele University, 20132 Milan, Italy

6. Feinstein Institute for Medical Research, Manhasset, NY 11030

7. Departments of Women’s and Children’s Health, Karolinska Institute and Karolinska University Hospital, SE-171 77 Stockholm, Sweden

Abstract

Tissue damage causes inflammation, by recruiting leukocytes and activating them to release proinflammatory mediators. We show that high-mobility group box 1 protein (HMGB1) orchestrates both processes by switching among mutually exclusive redox states. Reduced cysteines make HMGB1 a chemoattractant, whereas a disulfide bond makes it a proinflammatory cytokine and further cysteine oxidation to sulfonates by reactive oxygen species abrogates both activities. We show that leukocyte recruitment and activation can be separated. A nonoxidizable HMGB1 mutant in which serines replace all cysteines (3S-HMGB1) does not promote cytokine production, but is more effective than wild-type HMGB1 in recruiting leukocytes in vivo. BoxA, a HMGB1 inhibitor, interferes with leukocyte recruitment but not with activation. We detected the different redox forms of HMGB1 ex vivo within injured muscle. HMGB1 is completely reduced at first and disulfide-bonded later. Thus, HMGB1 orchestrates both key events in sterile inflammation, leukocyte recruitment and their induction to secrete inflammatory cytokines, by adopting mutually exclusive redox states.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

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