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Dedifferentiation‐derived neural stem cells exhibit perturbed temporal progression

Dedifferentiation is the reversion of mature cells to a stem cell‐like fate, whereby gene expression programs are altered and genes associated with multipotency are (re)expressed. Misexpression of multipotency factors and pathways causes the formation of ectopic neural stem cells (NSCs). Whether ded...

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Autores principales: Veen, Kellie, Nguyen, Phuong‐Khanh, Froldi, Francesca, Dong, Qian, Alvarez‐Ochoa, Edel, Harvey, Kieran F, McMullen, John PD, Marshall, Owen, Jusuf, Patricia R, Cheng, Louise Y
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10240205/
https://www.ncbi.nlm.nih.gov/pubmed/37039033
http://dx.doi.org/10.15252/embr.202255837
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author Veen, Kellie
Nguyen, Phuong‐Khanh
Froldi, Francesca
Dong, Qian
Alvarez‐Ochoa, Edel
Harvey, Kieran F
McMullen, John PD
Marshall, Owen
Jusuf, Patricia R
Cheng, Louise Y
author_facet Veen, Kellie
Nguyen, Phuong‐Khanh
Froldi, Francesca
Dong, Qian
Alvarez‐Ochoa, Edel
Harvey, Kieran F
McMullen, John PD
Marshall, Owen
Jusuf, Patricia R
Cheng, Louise Y
author_sort Veen, Kellie
collection PubMed
description Dedifferentiation is the reversion of mature cells to a stem cell‐like fate, whereby gene expression programs are altered and genes associated with multipotency are (re)expressed. Misexpression of multipotency factors and pathways causes the formation of ectopic neural stem cells (NSCs). Whether dedifferentiated NSCs faithfully produce the correct number and types of progeny, or undergo timely terminal differentiation, has not been assessed. Here, we show that ectopic NSCs induced via bHLH transcription factor Deadpan (Dpn) expression fail to undergo appropriate temporal progression by constantly expressing mid‐temporal transcription factor(tTF), Sloppy‐paired 1/2 (Slp). Consequently, this resulted in impaired terminal differenation and generated an excess of Twin of eyeless (Toy)‐positive neurons at the expense of Reversed polarity (Repo)‐positive glial cells. Preference for a mid‐temporal fate in these ectopic NSCs is concordant with an enriched binding of Dpn at mid‐tTF loci and a depletion of Dpn binding at early‐ and late‐tTF loci. Retriggering the temporal series via manipulation of the temporal series or cell cycle is sufficient to reinstate neuronal diversity and timely termination.
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spelling pubmed-102402052023-06-06 Dedifferentiation‐derived neural stem cells exhibit perturbed temporal progression Veen, Kellie Nguyen, Phuong‐Khanh Froldi, Francesca Dong, Qian Alvarez‐Ochoa, Edel Harvey, Kieran F McMullen, John PD Marshall, Owen Jusuf, Patricia R Cheng, Louise Y EMBO Rep Articles Dedifferentiation is the reversion of mature cells to a stem cell‐like fate, whereby gene expression programs are altered and genes associated with multipotency are (re)expressed. Misexpression of multipotency factors and pathways causes the formation of ectopic neural stem cells (NSCs). Whether dedifferentiated NSCs faithfully produce the correct number and types of progeny, or undergo timely terminal differentiation, has not been assessed. Here, we show that ectopic NSCs induced via bHLH transcription factor Deadpan (Dpn) expression fail to undergo appropriate temporal progression by constantly expressing mid‐temporal transcription factor(tTF), Sloppy‐paired 1/2 (Slp). Consequently, this resulted in impaired terminal differenation and generated an excess of Twin of eyeless (Toy)‐positive neurons at the expense of Reversed polarity (Repo)‐positive glial cells. Preference for a mid‐temporal fate in these ectopic NSCs is concordant with an enriched binding of Dpn at mid‐tTF loci and a depletion of Dpn binding at early‐ and late‐tTF loci. Retriggering the temporal series via manipulation of the temporal series or cell cycle is sufficient to reinstate neuronal diversity and timely termination. John Wiley and Sons Inc. 2023-04-11 /pmc/articles/PMC10240205/ /pubmed/37039033 http://dx.doi.org/10.15252/embr.202255837 Text en © 2023 The Authors. Published under the terms of the CC BY 4.0 license. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (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 Articles
Veen, Kellie
Nguyen, Phuong‐Khanh
Froldi, Francesca
Dong, Qian
Alvarez‐Ochoa, Edel
Harvey, Kieran F
McMullen, John PD
Marshall, Owen
Jusuf, Patricia R
Cheng, Louise Y
Dedifferentiation‐derived neural stem cells exhibit perturbed temporal progression
title Dedifferentiation‐derived neural stem cells exhibit perturbed temporal progression
title_full Dedifferentiation‐derived neural stem cells exhibit perturbed temporal progression
title_fullStr Dedifferentiation‐derived neural stem cells exhibit perturbed temporal progression
title_full_unstemmed Dedifferentiation‐derived neural stem cells exhibit perturbed temporal progression
title_short Dedifferentiation‐derived neural stem cells exhibit perturbed temporal progression
title_sort dedifferentiation‐derived neural stem cells exhibit perturbed temporal progression
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10240205/
https://www.ncbi.nlm.nih.gov/pubmed/37039033
http://dx.doi.org/10.15252/embr.202255837
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