John E. Dominy, Ph.D.

Affiliations: 
2008 Cornell University, Ithaca, NY, United States 
Area:
Nutrition, Molecular Biology
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Martha H. Stipanuk grad student 2008 Cornell
 (A story of two mammalian thiol dioxygenases: A characterization of substrate mediated post-translation modifications of cysteine dioxygenase and the discovery of cysteamine dioxygenase.)
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Publications

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Tavares CD, Sharabi K, Dominy JE, et al. (2016) The Methionine Transamination Pathway Controls Hepatic Glucose Metabolism through Regulation of the GCN5 Acetyl Transferase and the PGC-1α Transcriptional Coactivator. The Journal of Biological Chemistry
Chow JD, Lawrence RT, Healy ME, et al. (2014) Genetic inhibition of hepatic acetyl-CoA carboxylase activity increases liver fat and alters global protein acetylation. Molecular Metabolism. 3: 419-31
Lee Y, Dominy JE, Choi YJ, et al. (2014) Cyclin D1-Cdk4 controls glucose metabolism independently of cell cycle progression. Nature. 510: 547-51
Dominy J, Puigserver P, Cantó C. (2013) In vivo measurement of the acetylation state of sirtuin substrates as a proxy for sirtuin activity. Methods in Molecular Biology (Clifton, N.J.). 1077: 217-37
Hall JA, Dominy JE, Lee Y, et al. (2013) The sirtuin family's role in aging and age-associated pathologies. The Journal of Clinical Investigation. 123: 973-9
Lim JH, Gerhart-Hines Z, Dominy JE, et al. (2013) Oleic acid stimulates complete oxidation of fatty acids through protein kinase A-dependent activation of SIRT1-PGC1α complex. The Journal of Biological Chemistry. 288: 7117-26
Dominy JE, Lee Y, Jedrychowski MP, et al. (2012) The deacetylase Sirt6 activates the acetyltransferase GCN5 and suppresses hepatic gluconeogenesis. Molecular Cell. 48: 900-13
Dominy JE, Vazquez F, Puigserver P. (2012) Glycine decarboxylase cleaves a "malignant" metabolic path to promote tumor initiation. Cancer Cell. 21: 143-5
Dominy JE, Gerhart-Hines Z, Puigserver P. (2011) Nutrient-dependent acetylation controls basic regulatory metabolic switches and cellular reprogramming. Cold Spring Harbor Symposia On Quantitative Biology. 76: 203-9
Gerhart-Hines Z, Dominy JE, Blättler SM, et al. (2011) The cAMP/PKA pathway rapidly activates SIRT1 to promote fatty acid oxidation independently of changes in NAD(+). Molecular Cell. 44: 851-63
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