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Publications indexed to the term Peroxisome Proliferator-Activated Receptor Gamma Coactivator 1-alpha

FacultyTitle
2CBX5/G9a/H3K9me-mediated gene repression is essential to fibroblast activation during lung fibrosis. (Ligresti G, Caporarello N, Meridew JA, Jones DL, Tan Q, Choi KM, Haak AJ, Aravamudhan A, Roden AC, Prakash YS, Lomberk G, Urrutia RA, Tschumperlin DJ) JCI Insight 2019 May 16;5(12)       52 Citations
1A Screen Using iPSC-Derived Hepatocytes Reveals NAD+ as a Potential Treatment for mtDNA Depletion Syndrome. (Jing R, Corbett JL, Cai J, Beeson GC, Beeson CC, Chan SS, Dimmock DP, Lazcares L, Geurts AM, Lemasters JJ, Duncan SA) Cell Rep 2018 Nov 06;25(6):1469-1484.e5       38 Citations
2YAP1-TEAD1 signaling controls angiogenesis and mitochondrial biogenesis through PGC1α. (Mammoto A, Muyleart M, Kadlec A, Gutterman D, Mammoto T) Microvasc Res 2018 Sep;119:73-83       39 Citations
1Microvascular Adaptations to Exercise: Protective Effect of PGC-1 Alpha. (Kadlec AO, Barnes C, Durand MJ, Gutterman DD) Am J Hypertens 2018 Jan 12;31(2):240-246       8 Citations
4PGC-1α (Peroxisome Proliferator-Activated Receptor γ Coactivator 1-α) Overexpression in Coronary Artery Disease Recruits NO and Hydrogen Peroxide During Flow-Mediated Dilation and Protects Against Increased Intraluminal Pressure. (Kadlec AO, Chabowski DS, Ait-Aissa K, Hockenberry JC, Otterson MF, Durand MJ, Freed JK, Beyer AM, Gutterman DD) Hypertension 2017 Jul;70(1):166-173       38 Citations
1Skeletal muscle PGC-1β signaling is sufficient to drive an endurance exercise phenotype and to counteract components of detraining in mice. (Lee S, Leone TC, Rogosa L, Rumsey J, Ayala J, Coen PM, Fitts RH, Vega RB, Kelly DP) Am J Physiol Endocrinol Metab 2017 May 01;312(5):E394-E406       13 Citations
1Oxaloacetate activates brain mitochondrial biogenesis, enhances the insulin pathway, reduces inflammation and stimulates neurogenesis. (Wilkins HM, Harris JL, Carl SM, E L, Lu J, Eva Selfridge J, Roy N, Hutfles L, Koppel S, Morris J, Burns JM, Michaelis ML, Michaelis EK, Brooks WM, Swerdlow RH) Hum Mol Genet 2014 Dec 15;23(24):6528-41       75 Citations
1Effect of high-intensity exercise on aged mouse brain mitochondria, neurogenesis, and inflammation. (E L, Burns JM, Swerdlow RH) Neurobiol Aging 2014 Nov;35(11):2574-2583       76 Citations
1Differential responses of pancreatic β-cells to ROS and RNS. (Meares GP, Fontanilla D, Broniowska KA, Andreone T, Lancaster JR Jr, Corbett JA) Am J Physiol Endocrinol Metab 2013 Mar 15;304(6):E614-22       33 Citations
1Effect of exercise on mouse liver and brain bioenergetic infrastructures. (E L, Lu J, Burns JM, Swerdlow RH) Exp Physiol 2013 Jan;98(1):207-19       34 Citations
1Increased mitochondrial biogenesis in muscle improves aging phenotypes in the mtDNA mutator mouse. (Dillon LM, Williams SL, Hida A, Peacock JD, Prolla TA, Lincoln J, Moraes CT) Hum Mol Genet 2012 May 15;21(10):2288-97       76 Citations
1Multiple binding modes between HNF4alpha and the LXXLL motifs of PGC-1alpha lead to full activation. (Rha GB, Wu G, Shoelson SE, Chi YI) J Biol Chem 2009 Dec 11;284(50):35165-76       26 Citations
1Distinct regulation of hepatitis B virus biosynthesis by peroxisome proliferator-activated receptor gamma coactivator 1alpha and small heterodimer partner in human hepatoma cell lines. (Ondracek CR, Reese VC, Rushing CN, Oropeza CE, McLachlan A) J Virol 2009 Dec;83(23):12545-51       17 Citations
1Peroxisome proliferator-activated receptor gamma Coactivator 1alpha and small heterodimer partner differentially regulate nuclear receptor-dependent hepatitis B virus biosynthesis. (Ondracek CR, Rushing CN, Reese VC, Oropeza CE, McLachlan A) J Virol 2009 Dec;83(23):12535-44       21 Citations