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SOX2 is required independently in both stem and differentiated cells for pituitary tumorigenesis in p27-null mice

P27, a cell cycle inhibitor, is also able to drive repression of Sox2. This interaction plays a crucial role during development of p27(−/−) pituitary tumors because loss of one copy of Sox2 impairs tumorigenesis [H. Li et al., Cell Stem Cell 11, 845–852 (2012)]. However, SOX2 is expressed in both en...

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Autores principales: Moncho-Amor, Veronica, Chakravarty, Probir, Galichet, Christophe, Matheu, Ander, Lovell-Badge, Robin, Rizzoti, Karine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7896314/
https://www.ncbi.nlm.nih.gov/pubmed/33574062
http://dx.doi.org/10.1073/pnas.2017115118
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author Moncho-Amor, Veronica
Chakravarty, Probir
Galichet, Christophe
Matheu, Ander
Lovell-Badge, Robin
Rizzoti, Karine
author_facet Moncho-Amor, Veronica
Chakravarty, Probir
Galichet, Christophe
Matheu, Ander
Lovell-Badge, Robin
Rizzoti, Karine
author_sort Moncho-Amor, Veronica
collection PubMed
description P27, a cell cycle inhibitor, is also able to drive repression of Sox2. This interaction plays a crucial role during development of p27(−/−) pituitary tumors because loss of one copy of Sox2 impairs tumorigenesis [H. Li et al., Cell Stem Cell 11, 845–852 (2012)]. However, SOX2 is expressed in both endocrine and stem cells (SCs), and its contribution to tumorigenesis in either cell type is unknown. We have thus explored the cellular origin and mechanisms underlying endocrine tumorigenesis in p27(−/−) pituitaries. We found that pituitary hyperplasia is associated with reduced cellular differentiation, in parallel with increased levels of SOX2 in stem and endocrine cells. Using conditional loss-of-function and lineage tracing approaches, we show that SOX2 is required cell autonomously in p27(−/−) endocrine cells for these to give rise to tumors, and in SCs for promotion of tumorigenesis. This is supported by studies deleting the Sox2 regulatory region 2 (Srr2), the target of P27 repressive action. Single cell transcriptomic analysis further reveals that activation of a SOX2-dependent MAPK pathway in SCs is important for tumorigenesis. Altogether, our data highlight different aspects of the role of SOX2 following loss of p27, according to cellular context, and uncover an unexpected SOX2-dependent tumor-promoting role for SCs. Our results imply that targeting SCs, in addition to tumor cells, may represent an efficient antitumoral strategy in certain contexts.
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spelling pubmed-78963142021-02-24 SOX2 is required independently in both stem and differentiated cells for pituitary tumorigenesis in p27-null mice Moncho-Amor, Veronica Chakravarty, Probir Galichet, Christophe Matheu, Ander Lovell-Badge, Robin Rizzoti, Karine Proc Natl Acad Sci U S A Biological Sciences P27, a cell cycle inhibitor, is also able to drive repression of Sox2. This interaction plays a crucial role during development of p27(−/−) pituitary tumors because loss of one copy of Sox2 impairs tumorigenesis [H. Li et al., Cell Stem Cell 11, 845–852 (2012)]. However, SOX2 is expressed in both endocrine and stem cells (SCs), and its contribution to tumorigenesis in either cell type is unknown. We have thus explored the cellular origin and mechanisms underlying endocrine tumorigenesis in p27(−/−) pituitaries. We found that pituitary hyperplasia is associated with reduced cellular differentiation, in parallel with increased levels of SOX2 in stem and endocrine cells. Using conditional loss-of-function and lineage tracing approaches, we show that SOX2 is required cell autonomously in p27(−/−) endocrine cells for these to give rise to tumors, and in SCs for promotion of tumorigenesis. This is supported by studies deleting the Sox2 regulatory region 2 (Srr2), the target of P27 repressive action. Single cell transcriptomic analysis further reveals that activation of a SOX2-dependent MAPK pathway in SCs is important for tumorigenesis. Altogether, our data highlight different aspects of the role of SOX2 following loss of p27, according to cellular context, and uncover an unexpected SOX2-dependent tumor-promoting role for SCs. Our results imply that targeting SCs, in addition to tumor cells, may represent an efficient antitumoral strategy in certain contexts. National Academy of Sciences 2021-02-16 2021-02-11 /pmc/articles/PMC7896314/ /pubmed/33574062 http://dx.doi.org/10.1073/pnas.2017115118 Text en Copyright © 2021 the Author(s). Published by PNAS. http://creativecommons.org/licenses/by/4.0/ https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Moncho-Amor, Veronica
Chakravarty, Probir
Galichet, Christophe
Matheu, Ander
Lovell-Badge, Robin
Rizzoti, Karine
SOX2 is required independently in both stem and differentiated cells for pituitary tumorigenesis in p27-null mice
title SOX2 is required independently in both stem and differentiated cells for pituitary tumorigenesis in p27-null mice
title_full SOX2 is required independently in both stem and differentiated cells for pituitary tumorigenesis in p27-null mice
title_fullStr SOX2 is required independently in both stem and differentiated cells for pituitary tumorigenesis in p27-null mice
title_full_unstemmed SOX2 is required independently in both stem and differentiated cells for pituitary tumorigenesis in p27-null mice
title_short SOX2 is required independently in both stem and differentiated cells for pituitary tumorigenesis in p27-null mice
title_sort sox2 is required independently in both stem and differentiated cells for pituitary tumorigenesis in p27-null mice
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7896314/
https://www.ncbi.nlm.nih.gov/pubmed/33574062
http://dx.doi.org/10.1073/pnas.2017115118
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