Reactive oxygen species are involved in both physiological and pathological processes including neurodegeneration and cancer. Therefore, cells have developed scavenging mechanisms to maintain redox homeostasis under control. Tumor suppressor genes play a critical role in the regulation of antioxidant genes. Here, we investigated whether the tumor suppressor gene TAp73 is involved in the regulation of metabolic adaptations triggered in response to oxidative stress. H2O2 treatment resulted in numerous biochemical changes in both control and TAp73 knockout (TAp73-/-) mouse embryonic fibroblasts, however the extent of these changes was more pronounced in TAp73-/- cells when compared to control cells. In particular, loss of TAp73 led to alterations in glucose, nucleotide and amino acid metabolism. In addition, H2O2 treatment resulted in increased pentose phosphate pathway (PPP) activity in null mouse embryonic fibroblasts. Overall, our results suggest that in the absence of TAp73, H2O2 treatment results in an enhanced oxidative environment, and at the same time in an increased pro-anabolic phenotype. In conclusion, the metabolic profile observed reinforces the role of TAp73 as tumor suppressor and indicates that TAp73 exerts this function, at least partially, by regulation of cellular metabolism.

Agostini, M., Annicchiarico-Petruzzelli, M., Melino, G., Rufini, A. (2016). Metabolic pathways regulated by TAp73 in response to oxidative stress. ONCOTARGET, 7(21), 29881-900-29900 [10.18632/oncotarget.8935].

Metabolic pathways regulated by TAp73 in response to oxidative stress

Agostini, Massimiliano;
2016-05-24

Abstract

Reactive oxygen species are involved in both physiological and pathological processes including neurodegeneration and cancer. Therefore, cells have developed scavenging mechanisms to maintain redox homeostasis under control. Tumor suppressor genes play a critical role in the regulation of antioxidant genes. Here, we investigated whether the tumor suppressor gene TAp73 is involved in the regulation of metabolic adaptations triggered in response to oxidative stress. H2O2 treatment resulted in numerous biochemical changes in both control and TAp73 knockout (TAp73-/-) mouse embryonic fibroblasts, however the extent of these changes was more pronounced in TAp73-/- cells when compared to control cells. In particular, loss of TAp73 led to alterations in glucose, nucleotide and amino acid metabolism. In addition, H2O2 treatment resulted in increased pentose phosphate pathway (PPP) activity in null mouse embryonic fibroblasts. Overall, our results suggest that in the absence of TAp73, H2O2 treatment results in an enhanced oxidative environment, and at the same time in an increased pro-anabolic phenotype. In conclusion, the metabolic profile observed reinforces the role of TAp73 as tumor suppressor and indicates that TAp73 exerts this function, at least partially, by regulation of cellular metabolism.
24-mag-2016
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/10 - BIOCHIMICA
Settore BIO/11 - BIOLOGIA MOLECOLARE
English
Con Impact Factor ISI
ROS; metabolism; oxidative stress; p53 family; p73; Amino Acids; Animals; Antioxidants; Apoptosis; Cells, Cultured; Fibroblasts; Glucose; Hydrogen Peroxide; Mice; Mice, Knockout; Nuclear Proteins; Nucleotides; Oxidants; Oxidative Stress; Pentose Phosphate Pathway; Primary Cell Culture
Agostini, M., Annicchiarico-Petruzzelli, M., Melino, G., Rufini, A. (2016). Metabolic pathways regulated by TAp73 in response to oxidative stress. ONCOTARGET, 7(21), 29881-900-29900 [10.18632/oncotarget.8935].
Agostini, M; Annicchiarico-Petruzzelli, M; Melino, G; Rufini, A
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/207771
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