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p73 Regulates Primary Cortical Neuron Metabolism: a Global Metabolic Profile.

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posted on 2017-09-20, 10:56 authored by Massimiliano Agostini, Maria Victoria Niklison-Chirou, Margherita Maria Annicchiarico-Petruzzelli, Sandro Grelli, Nicola Di Daniele, Ilias Pestlikis, Richard A. Knight, Gerry Melino, Alessandro Rufini
The transcription factor p73 has been demonstrated to play a significant role in survival and differentiation of neuronal stem cells. In this report, by employing comprehensive metabolic profile and mitochondrial bioenergetics analysis, we have explored the metabolic alterations in cortical neurons isolated from p73 N-terminal isoform specific knockout animals. We found that loss of the TAp73 or ΔNp73 triggers selective biochemical changes. In particular, p73 isoforms regulate sphingolipid and phospholipid biochemical pathway signaling. Indeed, sphinganine and sphingosine levels were reduced in p73-depleted cortical neurons, and decreased levels of several membrane phospholipids were also observed. Moreover, in line with the complexity associated with p73 functions, loss of the TAp73 seems to increase glycolysis, whereas on the contrary, loss of ΔNp73 isoform reduces glucose metabolism, indicating an isoform-specific differential effect on glycolysis. These changes in glycolytic flux were not reflected by parallel alterations of mitochondrial respiration, as only a slight increase of mitochondrial maximal respiration was observed in p73-depleted cortical neurons. Overall, our findings reinforce the key role of p73 in regulating cellular metabolism and point out that p73 exerts its functions in neuronal biology at least partially through the regulation of metabolic pathways.

Funding

This work has been supported by the Medical Research Council, UK; grants from Associazione Italiana per la Ricerca contro il Cancro (AIRC): AIRC 2014 IG15653 (to G.M.), AIRC 5xmille MCO9979 (to G.M.), Fondazione Roma malattie Non trasmissibili Cronico-Degenerative (NCDS-2013- 00000334) Grant (to G.M.).

History

Citation

Molecular Neurobiology, 2017

Author affiliation

/Organisation/COLLEGE OF MEDICINE, BIOLOGICAL SCIENCES AND PSYCHOLOGY/School of Medicine/Department of Cancer Studies and Molecular Medicine

Version

  • AM (Accepted Manuscript)

Published in

Molecular Neurobiology

Publisher

Humana Press

issn

0893-7648

eissn

1559-1182

Copyright date

2017

Available date

2018-05-06

Publisher version

https://link.springer.com/article/10.1007/s12035-017-0517-3

Notes

The file associated with this record is under embargo until 12 months after publication, in accordance with the publisher's self-archiving policy. The full text may be available through the publisher links provided above.

Language

en

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