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A Systems Approach Identifies Essential FOXO3 Functions at Key Steps of Terminal Erythropoiesis

Circulating red blood cells (RBCs) are essential for tissue oxygenation and homeostasis. Defective terminal erythropoiesis contributes to decreased generation of RBCs in many disorders. Specifically, ineffective nuclear expulsion (enucleation) during terminal maturation is an obstacle to therapeutic...

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Autores principales: Liang, Raymond, Campreciós, Genís, Kou, Yan, McGrath, Kathleen, Nowak, Roberta, Catherman, Seana, Bigarella, Carolina L., Rimmelé, Pauline, Zhang, Xin, Gnanapragasam, Merlin Nithya, Bieker, James J., Papatsenko, Dmitri, Ma’ayan, Avi, Bresnick, Emery, Fowler, Velia, Palis, James, Ghaffari, Saghi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599908/
https://www.ncbi.nlm.nih.gov/pubmed/26452208
http://dx.doi.org/10.1371/journal.pgen.1005526
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author Liang, Raymond
Campreciós, Genís
Kou, Yan
McGrath, Kathleen
Nowak, Roberta
Catherman, Seana
Bigarella, Carolina L.
Rimmelé, Pauline
Zhang, Xin
Gnanapragasam, Merlin Nithya
Bieker, James J.
Papatsenko, Dmitri
Ma’ayan, Avi
Bresnick, Emery
Fowler, Velia
Palis, James
Ghaffari, Saghi
author_facet Liang, Raymond
Campreciós, Genís
Kou, Yan
McGrath, Kathleen
Nowak, Roberta
Catherman, Seana
Bigarella, Carolina L.
Rimmelé, Pauline
Zhang, Xin
Gnanapragasam, Merlin Nithya
Bieker, James J.
Papatsenko, Dmitri
Ma’ayan, Avi
Bresnick, Emery
Fowler, Velia
Palis, James
Ghaffari, Saghi
author_sort Liang, Raymond
collection PubMed
description Circulating red blood cells (RBCs) are essential for tissue oxygenation and homeostasis. Defective terminal erythropoiesis contributes to decreased generation of RBCs in many disorders. Specifically, ineffective nuclear expulsion (enucleation) during terminal maturation is an obstacle to therapeutic RBC production in vitro. To obtain mechanistic insights into terminal erythropoiesis we focused on FOXO3, a transcription factor implicated in erythroid disorders. Using an integrated computational and experimental systems biology approach, we show that FOXO3 is essential for the correct temporal gene expression during terminal erythropoiesis. We demonstrate that the FOXO3-dependent genetic network has critical physiological functions at key steps of terminal erythropoiesis including enucleation and mitochondrial clearance processes. FOXO3 loss deregulated transcription of genes implicated in cell polarity, nucleosome assembly and DNA packaging-related processes and compromised erythroid enucleation. Using high-resolution confocal microscopy and imaging flow cytometry we show that cell polarization is impaired leading to multilobulated Foxo3 (-/-) erythroblasts defective in nuclear expulsion. Ectopic FOXO3 expression rescued Foxo3 (-/-) erythroblast enucleation-related gene transcription, enucleation defects and terminal maturation. Remarkably, FOXO3 ectopic expression increased wild type erythroblast maturation and enucleation suggesting that enhancing FOXO3 activity may improve RBCs production. Altogether these studies uncover FOXO3 as a novel regulator of erythroblast enucleation and terminal maturation suggesting FOXO3 modulation might be therapeutic in disorders with defective erythroid maturation.
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spelling pubmed-45999082015-10-20 A Systems Approach Identifies Essential FOXO3 Functions at Key Steps of Terminal Erythropoiesis Liang, Raymond Campreciós, Genís Kou, Yan McGrath, Kathleen Nowak, Roberta Catherman, Seana Bigarella, Carolina L. Rimmelé, Pauline Zhang, Xin Gnanapragasam, Merlin Nithya Bieker, James J. Papatsenko, Dmitri Ma’ayan, Avi Bresnick, Emery Fowler, Velia Palis, James Ghaffari, Saghi PLoS Genet Research Article Circulating red blood cells (RBCs) are essential for tissue oxygenation and homeostasis. Defective terminal erythropoiesis contributes to decreased generation of RBCs in many disorders. Specifically, ineffective nuclear expulsion (enucleation) during terminal maturation is an obstacle to therapeutic RBC production in vitro. To obtain mechanistic insights into terminal erythropoiesis we focused on FOXO3, a transcription factor implicated in erythroid disorders. Using an integrated computational and experimental systems biology approach, we show that FOXO3 is essential for the correct temporal gene expression during terminal erythropoiesis. We demonstrate that the FOXO3-dependent genetic network has critical physiological functions at key steps of terminal erythropoiesis including enucleation and mitochondrial clearance processes. FOXO3 loss deregulated transcription of genes implicated in cell polarity, nucleosome assembly and DNA packaging-related processes and compromised erythroid enucleation. Using high-resolution confocal microscopy and imaging flow cytometry we show that cell polarization is impaired leading to multilobulated Foxo3 (-/-) erythroblasts defective in nuclear expulsion. Ectopic FOXO3 expression rescued Foxo3 (-/-) erythroblast enucleation-related gene transcription, enucleation defects and terminal maturation. Remarkably, FOXO3 ectopic expression increased wild type erythroblast maturation and enucleation suggesting that enhancing FOXO3 activity may improve RBCs production. Altogether these studies uncover FOXO3 as a novel regulator of erythroblast enucleation and terminal maturation suggesting FOXO3 modulation might be therapeutic in disorders with defective erythroid maturation. Public Library of Science 2015-10-09 /pmc/articles/PMC4599908/ /pubmed/26452208 http://dx.doi.org/10.1371/journal.pgen.1005526 Text en © 2015 Liang 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
Liang, Raymond
Campreciós, Genís
Kou, Yan
McGrath, Kathleen
Nowak, Roberta
Catherman, Seana
Bigarella, Carolina L.
Rimmelé, Pauline
Zhang, Xin
Gnanapragasam, Merlin Nithya
Bieker, James J.
Papatsenko, Dmitri
Ma’ayan, Avi
Bresnick, Emery
Fowler, Velia
Palis, James
Ghaffari, Saghi
A Systems Approach Identifies Essential FOXO3 Functions at Key Steps of Terminal Erythropoiesis
title A Systems Approach Identifies Essential FOXO3 Functions at Key Steps of Terminal Erythropoiesis
title_full A Systems Approach Identifies Essential FOXO3 Functions at Key Steps of Terminal Erythropoiesis
title_fullStr A Systems Approach Identifies Essential FOXO3 Functions at Key Steps of Terminal Erythropoiesis
title_full_unstemmed A Systems Approach Identifies Essential FOXO3 Functions at Key Steps of Terminal Erythropoiesis
title_short A Systems Approach Identifies Essential FOXO3 Functions at Key Steps of Terminal Erythropoiesis
title_sort systems approach identifies essential foxo3 functions at key steps of terminal erythropoiesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599908/
https://www.ncbi.nlm.nih.gov/pubmed/26452208
http://dx.doi.org/10.1371/journal.pgen.1005526
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