IL-6 release from muscles during exercise is stimulated by lactate-dependent protease activity

Author:

Hojman Pernille1ORCID,Brolin Camilla2,Nørgaard-Christensen Nynne1,Dethlefsen Christine1,Lauenborg Britt1,Olsen Cecilie Køllner1,Åbom Mette Marie1,Krag Thomas3,Gehl Julie45,Pedersen Bente Klarlund1

Affiliation:

1. Centre of Inflammation and Metabolism and Centre for Physical Activity Research, Copenhagen University Hospital, University of Copenhagen, Copenhagen, Denmark

2. Department of Cellular and Molecular Medicine, University of Copenhagen, Copenhagen, Denmark

3. Copenhagen Neuromuscular Center, Copenhagen University Hospital, University of Copenhagen, Copenhagen, Denmark

4. Center for Experimental Drug and Gene Electrotransfer, Department of Oncology and Palliative Care, Zealand University Hospital, Roskilde, Denmark

5. Department of Clinical Medicine, Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen, Denmark

Abstract

IL-6 is secreted from muscles to the circulation during high-intensity and long-duration exercise, where muscle-derived IL-6 works as an energy sensor to increase release of energy substrates from liver and adipose tissues. We investigated the mechanism involved in the exercise-mediated surge in IL-6 during exercise. Using interval-based cycling in healthy young men, swimming exercise in mice, and electrical stimulation of primary human muscle cells, we explored the role of lactate production in muscular IL-6 release during exercise. First, we observed a tight correlation between lactate production and IL-6 release during both strenuous bicycling and electrically stimulated muscle cell cultures. In mice, intramuscular injection of lactate mimicked the exercise-dependent release of IL-6, and pH buffering of lactate production during exercise attenuated IL-6 secretion. Next, we used in vivo bioimaging to demonstrate that intrinsic intramuscular proteases were activated in mice during swimming, and that blockade of protease activity blunted swimming-induced IL-6 release in mice. Last, intramuscular injection of the protease hyaluronidase resulted in dramatic increases in serum IL-6 in mice, and immunohistochemical analyses showed that intramuscular lactate and hyaluronidase injections led to release of IL-6-containing intramyocellular vesicles. We identified a pool of IL-6 located within vesicles of skeletal muscle fibers, which could be readily secreted upon protease activity. This protease-dependent release of IL-6 was initiated by lactate production, linking training intensity and lactate production to IL-6 release during strenuous exercise.

Funder

Lundbeckfonden (Lundbeck Foundation)

Danish Cancer Society

Copenhagen University funds

Trygfonden

Danish National Research Foundation (Danmarks Grundforskningsfond)

Publisher

American Physiological Society

Subject

Physiology (medical),Physiology,Endocrinology, Diabetes and Metabolism

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