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Tbx15 controls skeletal muscle fibre-type determination and muscle metabolism

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2015

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Nature Pub. Group
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Lee, Kevin Y., Manvendra K. Singh, Siegfried Ussar, Petra Wetzel, Michael F. Hirshman, Laurie J. Goodyear, Andreas Kispert, and C. Ronald Kahn. 2015. “Tbx15 controls skeletal muscle fibre-type determination and muscle metabolism.” Nature Communications 6 (1): 8054. doi:10.1038/ncomms9054. http://dx.doi.org/10.1038/ncomms9054.

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Skeletal muscle is composed of both slow-twitch oxidative myofibers and fast-twitch glycolytic myofibers that differentially impact muscle metabolism, function and eventually whole-body physiology. Here we show that the mesodermal transcription factor T-box 15 (Tbx15) is highly and specifically expressed in glycolytic myofibers. Ablation of Tbx15 in vivo leads to a decrease in muscle size due to a decrease in the number of glycolytic fibres, associated with a small increase in the number of oxidative fibres. This shift in fibre composition results in muscles with slower myofiber contraction and relaxation, and also decreases whole-body oxygen consumption, reduces spontaneous activity, increases adiposity and glucose intolerance. Mechanistically, ablation of Tbx15 leads to activation of AMPK signalling and a decrease in Igf2 expression. Thus, Tbx15 is one of a limited number of transcription factors to be identified with a critical role in regulating glycolytic fibre identity and muscle metabolism.

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Tbx15 controls skeletal muscle fibre-type determination… : DASH Story 2016-01-31
This will be the first time I share this article with students for my lectures; I worked with diabetic patients in ISSSTECALI, a state goverment social security for municipal and state workers. [I am now] a teacher at the School of Medicine, [and] this article is a fascinating evidence of the advances that are taking place in medical research. The central aspect of the class will be Diabetes, the metabolic syndrome. Thank you in advance.