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

Pernille Hojman,Camilla Brolin, Nynne Nørgaard-Christensen,Christine Dethlefsen,Britt Lauenborg, Cecilie Køllner Olsen, Mette Marie Åbom,Thomas Krag,Julie Gehl,Bente Klarlund Pedersen

AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM(2019)

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摘要
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 intratnyocellular 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.
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关键词
interleukin-6,metalloproteinase,muscle-derived factors,myokines,physical activity
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