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FOXO3 regulates a common genomic program in aging and glioblastoma stem cells

BACKGROUND: Glioblastoma (GBM) is an aggressive, age-associated malignant glioma that contains populations of cancer stem cells. These glioma stem cells (GSCs) evade therapeutic interventions and repopulate tumors due to their existence in a slowly cycling quiescent state. Although aging is well kno...

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Autores principales: Audesse, Amanda J., Karashchuk, Galina, Gardell, Zachary A., Lakis, Nelli S., Maybury-Lewis, Sun Y., Brown, Abigail K., Leeman, Dena S., Teo, Yee Voan, Neretti, Nicola, Anthony, Douglas C., Brodsky, Alexander S., Webb, Ashley E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9601604/
https://www.ncbi.nlm.nih.gov/pubmed/36303712
http://dx.doi.org/10.1002/aac2.12043
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author Audesse, Amanda J.
Karashchuk, Galina
Gardell, Zachary A.
Lakis, Nelli S.
Maybury-Lewis, Sun Y.
Brown, Abigail K.
Leeman, Dena S.
Teo, Yee Voan
Neretti, Nicola
Anthony, Douglas C.
Brodsky, Alexander S.
Webb, Ashley E.
author_facet Audesse, Amanda J.
Karashchuk, Galina
Gardell, Zachary A.
Lakis, Nelli S.
Maybury-Lewis, Sun Y.
Brown, Abigail K.
Leeman, Dena S.
Teo, Yee Voan
Neretti, Nicola
Anthony, Douglas C.
Brodsky, Alexander S.
Webb, Ashley E.
author_sort Audesse, Amanda J.
collection PubMed
description BACKGROUND: Glioblastoma (GBM) is an aggressive, age-associated malignant glioma that contains populations of cancer stem cells. These glioma stem cells (GSCs) evade therapeutic interventions and repopulate tumors due to their existence in a slowly cycling quiescent state. Although aging is well known to increase cancer initiation, the extent to which the mechanisms supporting GSC tumorigenicity are related to physiological aging remains unknown. AIMS: Here, we investigate the transcriptional mechanisms by which Forkhead Box O3 (FOXO3), a transcriptional regulator that promotes healthy aging, affects GSC function and the extent to which FOXO3 transcriptional networks are dysregulated in aging and GBM. METHODS AND RESULTS: We performed transcriptome analysis of clinical GBM tumors and observed that high FOXO3 activity is associated with gene expression signatures of stem cell quiescence, reduced oxidative metabolism, and improved patient outcomes. Consistent with these findings, we show that elevated FOXO3 activity significantly reduces the proliferation of GBM-derived GSCs. Using RNA-seq, we find that functional ablation of FOXO3 in GSCs rewires the transcriptional circuitry associated with metabolism, epigenetic stability, quiescence, and differentiation. Since FOXO3 has been implicated in healthy aging, we then investigated the extent to which it regulates common transcriptional programs in aging neural stem cells (NSCs) and GSCs. We uncover a shared transcriptional program and, most strikingly, find that FOXO3-regulated pathways are associated with altered mitochondrial functions in both aging and GBM. CONCLUSIONS: This work identifies a FOXO-associated transcriptional program that correlates between GSCs and aging NSCs and is enriched for metabolic and stemness pathways connected with GBM and aging.
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spelling pubmed-96016042022-10-26 FOXO3 regulates a common genomic program in aging and glioblastoma stem cells Audesse, Amanda J. Karashchuk, Galina Gardell, Zachary A. Lakis, Nelli S. Maybury-Lewis, Sun Y. Brown, Abigail K. Leeman, Dena S. Teo, Yee Voan Neretti, Nicola Anthony, Douglas C. Brodsky, Alexander S. Webb, Ashley E. Aging Cancer Article BACKGROUND: Glioblastoma (GBM) is an aggressive, age-associated malignant glioma that contains populations of cancer stem cells. These glioma stem cells (GSCs) evade therapeutic interventions and repopulate tumors due to their existence in a slowly cycling quiescent state. Although aging is well known to increase cancer initiation, the extent to which the mechanisms supporting GSC tumorigenicity are related to physiological aging remains unknown. AIMS: Here, we investigate the transcriptional mechanisms by which Forkhead Box O3 (FOXO3), a transcriptional regulator that promotes healthy aging, affects GSC function and the extent to which FOXO3 transcriptional networks are dysregulated in aging and GBM. METHODS AND RESULTS: We performed transcriptome analysis of clinical GBM tumors and observed that high FOXO3 activity is associated with gene expression signatures of stem cell quiescence, reduced oxidative metabolism, and improved patient outcomes. Consistent with these findings, we show that elevated FOXO3 activity significantly reduces the proliferation of GBM-derived GSCs. Using RNA-seq, we find that functional ablation of FOXO3 in GSCs rewires the transcriptional circuitry associated with metabolism, epigenetic stability, quiescence, and differentiation. Since FOXO3 has been implicated in healthy aging, we then investigated the extent to which it regulates common transcriptional programs in aging neural stem cells (NSCs) and GSCs. We uncover a shared transcriptional program and, most strikingly, find that FOXO3-regulated pathways are associated with altered mitochondrial functions in both aging and GBM. CONCLUSIONS: This work identifies a FOXO-associated transcriptional program that correlates between GSCs and aging NSCs and is enriched for metabolic and stemness pathways connected with GBM and aging. 2021-12 2021-12-18 /pmc/articles/PMC9601604/ /pubmed/36303712 http://dx.doi.org/10.1002/aac2.12043 Text en https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the Creative Commons Attribution (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited
spellingShingle Article
Audesse, Amanda J.
Karashchuk, Galina
Gardell, Zachary A.
Lakis, Nelli S.
Maybury-Lewis, Sun Y.
Brown, Abigail K.
Leeman, Dena S.
Teo, Yee Voan
Neretti, Nicola
Anthony, Douglas C.
Brodsky, Alexander S.
Webb, Ashley E.
FOXO3 regulates a common genomic program in aging and glioblastoma stem cells
title FOXO3 regulates a common genomic program in aging and glioblastoma stem cells
title_full FOXO3 regulates a common genomic program in aging and glioblastoma stem cells
title_fullStr FOXO3 regulates a common genomic program in aging and glioblastoma stem cells
title_full_unstemmed FOXO3 regulates a common genomic program in aging and glioblastoma stem cells
title_short FOXO3 regulates a common genomic program in aging and glioblastoma stem cells
title_sort foxo3 regulates a common genomic program in aging and glioblastoma stem cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9601604/
https://www.ncbi.nlm.nih.gov/pubmed/36303712
http://dx.doi.org/10.1002/aac2.12043
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