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The E2F2 Transcription Factor Sustains Hepatic Glycerophospholipid Homeostasis in Mice

Increasing evidence links metabolic signals to cell proliferation, but the molecular wiring that connects the two core machineries remains largely unknown. E2Fs are master regulators of cellular proliferation. We have recently shown that E2F2 activity facilitates the completion of liver regeneration...

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Autores principales: Maldonado, Eduardo N., Delgado, Igotz, Furland, Natalia E., Buqué, Xabier, Iglesias, Ainhoa, Aveldaño, Marta I., Zubiaga, Ana, Fresnedo, Olatz, Ochoa, Begoña
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4232400/
https://www.ncbi.nlm.nih.gov/pubmed/25396754
http://dx.doi.org/10.1371/journal.pone.0112620
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author Maldonado, Eduardo N.
Delgado, Igotz
Furland, Natalia E.
Buqué, Xabier
Iglesias, Ainhoa
Aveldaño, Marta I.
Zubiaga, Ana
Fresnedo, Olatz
Ochoa, Begoña
author_facet Maldonado, Eduardo N.
Delgado, Igotz
Furland, Natalia E.
Buqué, Xabier
Iglesias, Ainhoa
Aveldaño, Marta I.
Zubiaga, Ana
Fresnedo, Olatz
Ochoa, Begoña
author_sort Maldonado, Eduardo N.
collection PubMed
description Increasing evidence links metabolic signals to cell proliferation, but the molecular wiring that connects the two core machineries remains largely unknown. E2Fs are master regulators of cellular proliferation. We have recently shown that E2F2 activity facilitates the completion of liver regeneration after partial hepatectomy (PH) by regulating the expression of genes required for S-phase entry. Our study also revealed that E2F2 determines the duration of hepatectomy-induced hepatic steatosis. A transcriptomic analysis of normal adult liver identified “lipid metabolism regulation” as a major E2F2 functional target, suggesting that E2F2 has a role in lipid homeostasis. Here we use wild-type (E2F2(+/+)) and E2F2 deficient (E2F2(−/−)) mice to investigate the in vivo role of E2F2 in the composition of liver lipids and fatty acids in two metabolically different contexts: quiescence and 48-h post-PH, when cellular proliferation and anabolic demands are maximal. We show that liver regeneration is accompanied by large triglyceride and protein increases without changes in total phospholipids both in E2F2(+/+) and E2F2(−/−) mice. Remarkably, we found that the phenotype of quiescent liver tissue from E2F2(−/−) mice resembles the phenotype of proliferating E2F2(+/+) liver tissue, characterized by a decreased phosphatidylcholine to phosphatidylethanolamine ratio and a reprogramming of genes involved in generation of choline and ethanolamine derivatives. The diversity of fatty acids in total lipid, triglycerides and phospholipids was essentially preserved on E2F2 loss both in proliferating and non-proliferating liver tissue, although notable exceptions in inflammation-related fatty acids of defined phospholipid classes were detected. Overall, our results indicate that E2F2 activity sustains the hepatic homeostasis of major membrane glycerolipid components while it is dispensable for storage glycerolipid balance.
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spelling pubmed-42324002014-11-26 The E2F2 Transcription Factor Sustains Hepatic Glycerophospholipid Homeostasis in Mice Maldonado, Eduardo N. Delgado, Igotz Furland, Natalia E. Buqué, Xabier Iglesias, Ainhoa Aveldaño, Marta I. Zubiaga, Ana Fresnedo, Olatz Ochoa, Begoña PLoS One Research Article Increasing evidence links metabolic signals to cell proliferation, but the molecular wiring that connects the two core machineries remains largely unknown. E2Fs are master regulators of cellular proliferation. We have recently shown that E2F2 activity facilitates the completion of liver regeneration after partial hepatectomy (PH) by regulating the expression of genes required for S-phase entry. Our study also revealed that E2F2 determines the duration of hepatectomy-induced hepatic steatosis. A transcriptomic analysis of normal adult liver identified “lipid metabolism regulation” as a major E2F2 functional target, suggesting that E2F2 has a role in lipid homeostasis. Here we use wild-type (E2F2(+/+)) and E2F2 deficient (E2F2(−/−)) mice to investigate the in vivo role of E2F2 in the composition of liver lipids and fatty acids in two metabolically different contexts: quiescence and 48-h post-PH, when cellular proliferation and anabolic demands are maximal. We show that liver regeneration is accompanied by large triglyceride and protein increases without changes in total phospholipids both in E2F2(+/+) and E2F2(−/−) mice. Remarkably, we found that the phenotype of quiescent liver tissue from E2F2(−/−) mice resembles the phenotype of proliferating E2F2(+/+) liver tissue, characterized by a decreased phosphatidylcholine to phosphatidylethanolamine ratio and a reprogramming of genes involved in generation of choline and ethanolamine derivatives. The diversity of fatty acids in total lipid, triglycerides and phospholipids was essentially preserved on E2F2 loss both in proliferating and non-proliferating liver tissue, although notable exceptions in inflammation-related fatty acids of defined phospholipid classes were detected. Overall, our results indicate that E2F2 activity sustains the hepatic homeostasis of major membrane glycerolipid components while it is dispensable for storage glycerolipid balance. Public Library of Science 2014-11-14 /pmc/articles/PMC4232400/ /pubmed/25396754 http://dx.doi.org/10.1371/journal.pone.0112620 Text en © 2014 Maldonado et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Maldonado, Eduardo N.
Delgado, Igotz
Furland, Natalia E.
Buqué, Xabier
Iglesias, Ainhoa
Aveldaño, Marta I.
Zubiaga, Ana
Fresnedo, Olatz
Ochoa, Begoña
The E2F2 Transcription Factor Sustains Hepatic Glycerophospholipid Homeostasis in Mice
title The E2F2 Transcription Factor Sustains Hepatic Glycerophospholipid Homeostasis in Mice
title_full The E2F2 Transcription Factor Sustains Hepatic Glycerophospholipid Homeostasis in Mice
title_fullStr The E2F2 Transcription Factor Sustains Hepatic Glycerophospholipid Homeostasis in Mice
title_full_unstemmed The E2F2 Transcription Factor Sustains Hepatic Glycerophospholipid Homeostasis in Mice
title_short The E2F2 Transcription Factor Sustains Hepatic Glycerophospholipid Homeostasis in Mice
title_sort e2f2 transcription factor sustains hepatic glycerophospholipid homeostasis in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4232400/
https://www.ncbi.nlm.nih.gov/pubmed/25396754
http://dx.doi.org/10.1371/journal.pone.0112620
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