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Creb Coactivators Direct Anabolic Responses and Enhance Performance of Skeletal Muscle

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Journal EMBO J
Date 2014 Mar 29
PMID 24674967
Citations 46
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Abstract

During the stress response to intense exercise, the sympathetic nervous system (SNS) induces rapid catabolism of energy reserves through the release of catecholamines and subsequent activation of protein kinase A (PKA). Paradoxically, chronic administration of sympathomimetic drugs (β-agonists) leads to anabolic adaptations in skeletal muscle, suggesting that sympathetic outflow also regulates myofiber remodeling. Here, we show that β-agonists or catecholamines released during intense exercise induce Creb-mediated transcriptional programs through activation of its obligate coactivators Crtc2 and Crtc3. In contrast to the catabolic activity normally associated with SNS function, activation of the Crtc/Creb transcriptional complex by conditional overexpression of Crtc2 in the skeletal muscle of transgenic mice fostered an anabolic state of energy and protein balance. Crtc2-overexpressing mice have increased myofiber cross-sectional area, greater intramuscular triglycerides and glycogen content. Moreover, maximal exercise capacity was enhanced after induction of Crtc2 expression in transgenic mice. Collectively these findings demonstrate that the SNS-adrenergic signaling cascade coordinates a transient catabolic stress response during high-intensity exercise, which is followed by transcriptional reprogramming that directs anabolic changes for recovery and that augments subsequent exercise performance.

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References
1.
Kline W, Panaro F, Yang H, Bodine S . Rapamycin inhibits the growth and muscle-sparing effects of clenbuterol. J Appl Physiol (1985). 2006; 102(2):740-7. DOI: 10.1152/japplphysiol.00873.2006. View

2.
Screaton R, Conkright M, Katoh Y, Best J, Canettieri G, Jeffries S . The CREB coactivator TORC2 functions as a calcium- and cAMP-sensitive coincidence detector. Cell. 2004; 119(1):61-74. DOI: 10.1016/j.cell.2004.09.015. View

3.
Cao W, Daniel K, Robidoux J, Puigserver P, Medvedev A, Bai X . p38 mitogen-activated protein kinase is the central regulator of cyclic AMP-dependent transcription of the brown fat uncoupling protein 1 gene. Mol Cell Biol. 2004; 24(7):3057-67. PMC: 371122. DOI: 10.1128/MCB.24.7.3057-3067.2004. View

4.
Herzig S, Long F, Jhala U, Hedrick S, Quinn R, Bauer A . CREB regulates hepatic gluconeogenesis through the coactivator PGC-1. Nature. 2001; 413(6852):179-83. DOI: 10.1038/35093131. View

5.
Koopman R, Gehrig S, Leger B, Trieu J, Walrand S, Murphy K . Cellular mechanisms underlying temporal changes in skeletal muscle protein synthesis and breakdown during chronic {beta}-adrenoceptor stimulation in mice. J Physiol. 2010; 588(Pt 23):4811-23. PMC: 3010148. DOI: 10.1113/jphysiol.2010.196725. View