Global Phosphoproteomic Analysis of Human Skeletal Muscle Reveals a Network of Exercise-Regulated Kinases and AMPK Substrates
Nolan J. Hoffman(Australian Catholic University), David E. James(The University of Sydney), Raja Jothi(National Institute of Environmental Health Sciences), Maximilian Kleinert(University of Potsdam), Sophie Trefely(Babraham Institute), Thomas E. Jensen(University of Copenhagen), Benjamin L. Parker(The University of Melbourne), Jørgen F. P. Wojtaszewski(University of Copenhagen), Kelsey H. Fisher‐Wellman(Atrium Health Wake Forest Baptist), Bente Kiens(University of Copenhagen), Sean J. Humphrey(The University of Sydney), James G. Burchfield(The University of Sydney), Mira Holliday(UNSW Sydney), Rima Chaudhuri(The University of Sydney), Jacqueline Stöckli(The University of Sydney), Daniel J. Fazakerley(University of Sydney), Pengyi Yang(The University of Sydney), Erik A. Richter(University of Copenhagen)
Cited by 443
Related Papers
Regulated transport of the glucose transporter GLUT4
|Nature Reviews Molecular Cell Biology|2002|1.2k
Berberine, a Natural Plant Product, Activates AMP-Activated Protein Kinase With Beneficial Metabolic Effects in Diabetic and Insulin-Resistant States
|Diabetes|2006|1.1k
Molecular cloning and characterization of an insulin-regulatable glucose transporter
|Nature|1989|910
Interleukin-6 Increases Insulin-Stimulated Glucose Disposal in Humans and Glucose Uptake and Fatty Acid Oxidation In Vitro via AMP-Activated Protein Kinase
|Diabetes|2006|893
Immuno-localization of the insulin regulatable glucose transporter in brown adipose tissue of the rat.
|The Journal of Cell Biology|1991|870