Glenn C. Rowe, Ph.D.

2007 Yale University, New Haven, CT 
Molecular Biology, Cell Biology
"Glenn Rowe"


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Roland Baron grad student 2007 Yale
 (The role of deltaFosB isoforms in osteoblast and adipocyte function: Two independent mechanisms to increase bone mass and decrease adipose mass.)
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Sato K, Idelevich A, Nagano K, et al. (2017) Hypothalamic ΔFosB prevents age-related metabolic decline and functions via SNS. Aging
Iacovelli J, Rowe GC, Khadka A, et al. (2016) PGC-1α Induces Human RPE Oxidative Metabolism and Antioxidant Capacity. Investigative Ophthalmology & Visual Science. 57: 1038-51
Rowe GC, Raghuram S, Jang C, et al. (2014) PGC-1α induces SPP1 to activate macrophages and orchestrate functional angiogenesis in skeletal muscle. Circulation Research. 115: 504-17
Rowe GC, Safdar A, Arany Z. (2014) Running forward: new frontiers in endurance exercise biology. Circulation. 129: 798-810
Thom R, Rowe GC, Jang C, et al. (2014) Hypoxic induction of vascular endothelial growth factor (VEGF) and angiogenesis in muscle by truncated peroxisome proliferator-activated receptor γ coactivator (PGC)-1α. The Journal of Biological Chemistry. 289: 8810-7
Chan MC, Rowe GC, Raghuram S, et al. (2014) Post-natal induction of PGC-1α protects against severe muscle dystrophy independently of utrophin. Skeletal Muscle. 4: 2
Rowe GC, Arany Z. (2014) Genetic models of PGC-1 and glucose metabolism and homeostasis. Reviews in Endocrine & Metabolic Disorders. 15: 21-9
Haq R, Shoag J, Andreu-Perez P, et al. (2013) Oncogenic BRAF regulates oxidative metabolism via PGC1α and MITF. Cancer Cell. 23: 302-15
Shoag J, Haq R, Zhang M, et al. (2013) PGC-1 coactivators regulate MITF and the tanning response. Molecular Cell. 49: 145-57
Rowe GC, El-Khoury R, Patten IS, et al. (2012) PGC-1α is dispensable for exercise-induced mitochondrial biogenesis in skeletal muscle. Plos One. 7: e41817
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