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Rev-erb-α modulates skeletal muscle oxidative capacity by regulating mitochondrial biogenesis and autophagy.

Nature medicine (2013-07-16)
Estelle Woldt, Yasmine Sebti, Laura A Solt, Christian Duhem, Steve Lancel, Jérôme Eeckhoute, Matthijs K C Hesselink, Charlotte Paquet, Stéphane Delhaye, Youseung Shin, Theodore M Kamenecka, Gert Schaart, Philippe Lefebvre, Rémi Nevière, Thomas P Burris, Patrick Schrauwen, Bart Staels, Hélène Duez
ABSTRAKT

The nuclear receptor Rev-erb-α modulates hepatic lipid and glucose metabolism, adipogenesis and the inflammatory response in macrophages. We show here that Rev-erb-α is highly expressed in oxidative skeletal muscle and that its deficiency in muscle leads to reduced mitochondrial content and oxidative function, as well as upregulation of autophagy. These cellular effects resulted in both impaired mitochondrial biogenesis and increased clearance of this organelle, leading to compromised exercise capacity. On a molecular level, Rev-erb-α deficiency resulted in deactivation of the Lkb1-Ampk-Sirt1-Ppargc-1α signaling pathway. These effects were recapitulated in isolated fibers and in muscle cells after knockdown of the gene encoding Rev-erb-α, Nr1d1. In complementary experiments, Rev-erb-α overexpression in vitro increased the number of mitochondria and improved respiratory capacity, whereas muscle overexpression or pharmacological activation of Rev-erb-α in vivo increased exercise capacity. This study identifies Rev-erb-α as a pharmacological target that improves muscle oxidative function by modulating gene networks controlling mitochondrial number and function.

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Sigma-Aldrich
Anti-Laminin antibody produced in rabbit, 0.5 mg/mL, affinity isolated antibody, buffered aqueous solution
Sigma-Aldrich
ChIPAb+ Oczyszczony acetylo-histon H3 (Lys9) - przeciwciało i zestaw primerów zweryfikowane pod kątem ChIP, from rabbit, purified by using Protein A