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The Drosophila Forkhead transcription factor FOXO mediates the reduction in cell number associated with reduced insulin signaling

BACKGROUND: Forkhead transcription factors belonging to the FOXO subfamily are negatively regulated by protein kinase B (PKB) in response to signaling by insulin and insulin-like growth factor in Caenorhabditis elegans and mammals. In Drosophila, the insulin-signaling pathway regulates the size of c...

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Autores principales: Jünger, Martin A, Rintelen, Felix, Stocker, Hugo, Wasserman, Jonathan D, Végh, Mátyás, Radimerski, Thomas, Greenberg, Michael E, Hafen, Ernst
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2003
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC333403/
https://www.ncbi.nlm.nih.gov/pubmed/12908874
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author Jünger, Martin A
Rintelen, Felix
Stocker, Hugo
Wasserman, Jonathan D
Végh, Mátyás
Radimerski, Thomas
Greenberg, Michael E
Hafen, Ernst
author_facet Jünger, Martin A
Rintelen, Felix
Stocker, Hugo
Wasserman, Jonathan D
Végh, Mátyás
Radimerski, Thomas
Greenberg, Michael E
Hafen, Ernst
author_sort Jünger, Martin A
collection PubMed
description BACKGROUND: Forkhead transcription factors belonging to the FOXO subfamily are negatively regulated by protein kinase B (PKB) in response to signaling by insulin and insulin-like growth factor in Caenorhabditis elegans and mammals. In Drosophila, the insulin-signaling pathway regulates the size of cells, organs, and the entire body in response to nutrient availability, by controlling both cell size and cell number. In this study, we present a genetic characterization of dFOXO, the only Drosophila FOXO ortholog. RESULTS: Ectopic expression of dFOXO and human FOXO3a induced organ-size reduction and cell death in a manner dependent on phosphoinositide (PI) 3-kinase and nutrient levels. Surprisingly, flies homozygous for dFOXO null alleles are viable and of normal size. They are, however, more sensitive to oxidative stress. Furthermore, dFOXO function is required for growth inhibition associated with reduced insulin signaling. Loss of dFOXO suppresses the reduction in cell number but not the cell-size reduction elicited by mutations in the insulin-signaling pathway. By microarray analysis and subsequent genetic validation, we have identified d4E-BP, which encodes a translation inhibitor, as a relevant dFOXO target gene. CONCLUSION: Our results show that dFOXO is a crucial mediator of insulin signaling in Drosophila, mediating the reduction in cell number in insulin-signaling mutants. We propose that in response to cellular stresses, such as nutrient deprivation or increased levels of reactive oxygen species, dFOXO is activated and inhibits growth through the action of target genes such as d4E-BP.
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spelling pubmed-3334032004-02-07 The Drosophila Forkhead transcription factor FOXO mediates the reduction in cell number associated with reduced insulin signaling Jünger, Martin A Rintelen, Felix Stocker, Hugo Wasserman, Jonathan D Végh, Mátyás Radimerski, Thomas Greenberg, Michael E Hafen, Ernst J Biol Research Article BACKGROUND: Forkhead transcription factors belonging to the FOXO subfamily are negatively regulated by protein kinase B (PKB) in response to signaling by insulin and insulin-like growth factor in Caenorhabditis elegans and mammals. In Drosophila, the insulin-signaling pathway regulates the size of cells, organs, and the entire body in response to nutrient availability, by controlling both cell size and cell number. In this study, we present a genetic characterization of dFOXO, the only Drosophila FOXO ortholog. RESULTS: Ectopic expression of dFOXO and human FOXO3a induced organ-size reduction and cell death in a manner dependent on phosphoinositide (PI) 3-kinase and nutrient levels. Surprisingly, flies homozygous for dFOXO null alleles are viable and of normal size. They are, however, more sensitive to oxidative stress. Furthermore, dFOXO function is required for growth inhibition associated with reduced insulin signaling. Loss of dFOXO suppresses the reduction in cell number but not the cell-size reduction elicited by mutations in the insulin-signaling pathway. By microarray analysis and subsequent genetic validation, we have identified d4E-BP, which encodes a translation inhibitor, as a relevant dFOXO target gene. CONCLUSION: Our results show that dFOXO is a crucial mediator of insulin signaling in Drosophila, mediating the reduction in cell number in insulin-signaling mutants. We propose that in response to cellular stresses, such as nutrient deprivation or increased levels of reactive oxygen species, dFOXO is activated and inhibits growth through the action of target genes such as d4E-BP. BioMed Central 2003 2003-08-07 /pmc/articles/PMC333403/ /pubmed/12908874 Text en Copyright © 2003 Jünger et al., licensee BioMed Central Ltd. This is an Open Access article: verbatim copying and redistribution of this article are permitted in all media for any purpose, provided this notice is preserved along with the article's original URL.
spellingShingle Research Article
Jünger, Martin A
Rintelen, Felix
Stocker, Hugo
Wasserman, Jonathan D
Végh, Mátyás
Radimerski, Thomas
Greenberg, Michael E
Hafen, Ernst
The Drosophila Forkhead transcription factor FOXO mediates the reduction in cell number associated with reduced insulin signaling
title The Drosophila Forkhead transcription factor FOXO mediates the reduction in cell number associated with reduced insulin signaling
title_full The Drosophila Forkhead transcription factor FOXO mediates the reduction in cell number associated with reduced insulin signaling
title_fullStr The Drosophila Forkhead transcription factor FOXO mediates the reduction in cell number associated with reduced insulin signaling
title_full_unstemmed The Drosophila Forkhead transcription factor FOXO mediates the reduction in cell number associated with reduced insulin signaling
title_short The Drosophila Forkhead transcription factor FOXO mediates the reduction in cell number associated with reduced insulin signaling
title_sort drosophila forkhead transcription factor foxo mediates the reduction in cell number associated with reduced insulin signaling
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC333403/
https://www.ncbi.nlm.nih.gov/pubmed/12908874
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