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Transcription factor SOX15 regulates stem cell pluripotency and promotes neural fate during differentiation by activating the neurogenic gene Hes5

SOX2 and SOX15 are Sox family transcription factors enriched in embryonic stem cells (ESCs). The role of SOX2 in activating gene expression programs essential for stem cell self-renewal and acquisition of pluripotency during somatic cell reprogramming is well-documented. However, the contribution of...

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Autores principales: Choi, Eun-Bee, Vodnala, Munender, Saini, Prince, Anugula, Sharath, Zerbato, Madeleine, Ho, Jaclyn J., Wang, Jianing, Ho Sui, Shannan J., Yoon, Joon, Roels, Marielle, Inouye, Carla, Fong, Yick W.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10023989/
https://www.ncbi.nlm.nih.gov/pubmed/36764520
http://dx.doi.org/10.1016/j.jbc.2023.102996
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author Choi, Eun-Bee
Vodnala, Munender
Saini, Prince
Anugula, Sharath
Zerbato, Madeleine
Ho, Jaclyn J.
Wang, Jianing
Ho Sui, Shannan J.
Yoon, Joon
Roels, Marielle
Inouye, Carla
Fong, Yick W.
author_facet Choi, Eun-Bee
Vodnala, Munender
Saini, Prince
Anugula, Sharath
Zerbato, Madeleine
Ho, Jaclyn J.
Wang, Jianing
Ho Sui, Shannan J.
Yoon, Joon
Roels, Marielle
Inouye, Carla
Fong, Yick W.
author_sort Choi, Eun-Bee
collection PubMed
description SOX2 and SOX15 are Sox family transcription factors enriched in embryonic stem cells (ESCs). The role of SOX2 in activating gene expression programs essential for stem cell self-renewal and acquisition of pluripotency during somatic cell reprogramming is well-documented. However, the contribution of SOX15 to these processes is unclear and often presumed redundant with SOX2 largely because overexpression of SOX15 can partially restore self-renewal in SOX2-deficient ESCs. Here, we show that SOX15 contributes to stem cell maintenance by cooperating with ESC-enriched transcriptional coactivators to ensure optimal expression of pluripotency-associated genes. We demonstrate that SOX15 depletion compromises reprogramming of fibroblasts to pluripotency which cannot be compensated by SOX2. Ectopic expression of SOX15 promotes the reversion of a postimplantation, epiblast stem cell state back to a preimplantation, ESC-like identity even though SOX2 is expressed in both cell states. We also uncover a role of SOX15 in lineage specification, by showing that loss of SOX15 leads to defects in commitment of ESCs to neural fates. SOX15 promotes neural differentiation by binding to and activating a previously uncharacterized distal enhancer of a key neurogenic regulator, Hes5. Together, these findings identify a multifaceted role of SOX15 in induction and maintenance of pluripotency and neural differentiation.
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spelling pubmed-100239892023-03-19 Transcription factor SOX15 regulates stem cell pluripotency and promotes neural fate during differentiation by activating the neurogenic gene Hes5 Choi, Eun-Bee Vodnala, Munender Saini, Prince Anugula, Sharath Zerbato, Madeleine Ho, Jaclyn J. Wang, Jianing Ho Sui, Shannan J. Yoon, Joon Roels, Marielle Inouye, Carla Fong, Yick W. J Biol Chem Research Article SOX2 and SOX15 are Sox family transcription factors enriched in embryonic stem cells (ESCs). The role of SOX2 in activating gene expression programs essential for stem cell self-renewal and acquisition of pluripotency during somatic cell reprogramming is well-documented. However, the contribution of SOX15 to these processes is unclear and often presumed redundant with SOX2 largely because overexpression of SOX15 can partially restore self-renewal in SOX2-deficient ESCs. Here, we show that SOX15 contributes to stem cell maintenance by cooperating with ESC-enriched transcriptional coactivators to ensure optimal expression of pluripotency-associated genes. We demonstrate that SOX15 depletion compromises reprogramming of fibroblasts to pluripotency which cannot be compensated by SOX2. Ectopic expression of SOX15 promotes the reversion of a postimplantation, epiblast stem cell state back to a preimplantation, ESC-like identity even though SOX2 is expressed in both cell states. We also uncover a role of SOX15 in lineage specification, by showing that loss of SOX15 leads to defects in commitment of ESCs to neural fates. SOX15 promotes neural differentiation by binding to and activating a previously uncharacterized distal enhancer of a key neurogenic regulator, Hes5. Together, these findings identify a multifaceted role of SOX15 in induction and maintenance of pluripotency and neural differentiation. American Society for Biochemistry and Molecular Biology 2023-02-09 /pmc/articles/PMC10023989/ /pubmed/36764520 http://dx.doi.org/10.1016/j.jbc.2023.102996 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Choi, Eun-Bee
Vodnala, Munender
Saini, Prince
Anugula, Sharath
Zerbato, Madeleine
Ho, Jaclyn J.
Wang, Jianing
Ho Sui, Shannan J.
Yoon, Joon
Roels, Marielle
Inouye, Carla
Fong, Yick W.
Transcription factor SOX15 regulates stem cell pluripotency and promotes neural fate during differentiation by activating the neurogenic gene Hes5
title Transcription factor SOX15 regulates stem cell pluripotency and promotes neural fate during differentiation by activating the neurogenic gene Hes5
title_full Transcription factor SOX15 regulates stem cell pluripotency and promotes neural fate during differentiation by activating the neurogenic gene Hes5
title_fullStr Transcription factor SOX15 regulates stem cell pluripotency and promotes neural fate during differentiation by activating the neurogenic gene Hes5
title_full_unstemmed Transcription factor SOX15 regulates stem cell pluripotency and promotes neural fate during differentiation by activating the neurogenic gene Hes5
title_short Transcription factor SOX15 regulates stem cell pluripotency and promotes neural fate during differentiation by activating the neurogenic gene Hes5
title_sort transcription factor sox15 regulates stem cell pluripotency and promotes neural fate during differentiation by activating the neurogenic gene hes5
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10023989/
https://www.ncbi.nlm.nih.gov/pubmed/36764520
http://dx.doi.org/10.1016/j.jbc.2023.102996
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