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Publication : The Role of Eif6 in Skeletal Muscle Homeostasis Revealed by Endurance Training Co-expression Networks.

First Author  Clarke K Year  2017
Journal  Cell Rep Volume  21
Issue  6 Pages  1507-1520
PubMed ID  29117557 Mgi Jnum  J:250090
Mgi Id  MGI:6101665 Doi  10.1016/j.celrep.2017.10.040
Citation  Clarke K, et al. (2017) The Role of Eif6 in Skeletal Muscle Homeostasis Revealed by Endurance Training Co-expression Networks. Cell Rep 21(6):1507-1520
abstractText  Regular endurance training improves muscle oxidative capacity and reduces the risk of age-related disorders. Understanding the molecular networks underlying this phenomenon is crucial. Here, by exploiting the power of computational modeling, we show that endurance training induces profound changes in gene regulatory networks linking signaling and selective control of translation to energy metabolism and tissue remodeling. We discovered that knockdown of the mTOR-independent factor Eif6, which we predicted to be a key regulator of this process, affects mitochondrial respiration efficiency, ROS production, and exercise performance. Our work demonstrates the validity of a data-driven approach to understanding muscle homeostasis.
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