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Publication : p73 regulates basal and starvation-induced liver metabolism in vivo.

First Author  He Z Year  2015
Journal  Oncotarget Volume  6
Issue  32 Pages  33178-90
PubMed ID  26375672 Mgi Jnum  J:315382
Mgi Id  MGI:6830304 Doi  10.18632/oncotarget.5090
Citation  He Z, et al. (2015) p73 regulates basal and starvation-induced liver metabolism in vivo. Oncotarget 6(32):33178-90
abstractText  As a member of the p53 gene family, p73 regulates cell cycle arrest, apoptosis, neurogenesis, immunity and inflammation. Recently, p73 has been shown to transcriptionally regulate selective metabolic enzymes, such as cytochrome c oxidase subunit IV isoform 1, glucose 6-phosphate dehydrogenase and glutaminase-2, resulting in significant effects on metabolism, including hepatocellular lipid metabolism, glutathione homeostasis and the pentose phosphate pathway. In order to further investigate the metabolic effect of p73, here, we compared the global metabolic profile of livers from p73 knockout and wild-type mice under both control and starvation conditions. Our results show that the depletion of all p73 isoforms cause altered lysine metabolism and glycolysis, distinct patterns for glutathione synthesis and Krebs cycle, as well as an elevated pentose phosphate pathway and abnormal lipid accumulation. These results indicate that p73 regulates basal and starvation-induced fuel metabolism in the liver, a finding that is likely to be highly relevant for metabolism-associated disorders, such as diabetes and cancer.
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