Cargando…

The Orphan Nuclear Receptor TLX Represses Hes1 Expression, Thereby Affecting NOTCH Signaling and Lineage Progression in the Adult SEZ

In the adult subependymal zone (SEZ), neural stem cells (NSCs) apically contacting the lateral ventricle on activation generate progenitors proliferating at the niche basal side. We here show that Tailless (TLX) coordinates NSC activation and basal progenitor proliferation by repressing the NOTCH ef...

Descripción completa

Detalles Bibliográficos
Autores principales: Luque-Molina, Inma, Shi, Yan, Abdullah, Yomn, Monaco, Sara, Hölzl-Wenig, Gabriele, Mandl, Claudia, Ciccolini, Francesca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6626847/
https://www.ncbi.nlm.nih.gov/pubmed/31178417
http://dx.doi.org/10.1016/j.stemcr.2019.05.004
_version_ 1783434607846227968
author Luque-Molina, Inma
Shi, Yan
Abdullah, Yomn
Monaco, Sara
Hölzl-Wenig, Gabriele
Mandl, Claudia
Ciccolini, Francesca
author_facet Luque-Molina, Inma
Shi, Yan
Abdullah, Yomn
Monaco, Sara
Hölzl-Wenig, Gabriele
Mandl, Claudia
Ciccolini, Francesca
author_sort Luque-Molina, Inma
collection PubMed
description In the adult subependymal zone (SEZ), neural stem cells (NSCs) apically contacting the lateral ventricle on activation generate progenitors proliferating at the niche basal side. We here show that Tailless (TLX) coordinates NSC activation and basal progenitor proliferation by repressing the NOTCH effector Hes1. Consistent with this, besides quiescence Hes1 expression also increases on Tlx mutation. Since HES1 levels are higher at the apical SEZ, NOTCH activation is increased in Tlx(−/−) NSCs, but not in surrounding basal progenitors. Underscoring the causative relationship between higher HES1/NOTCH and increased quiescence, downregulation of Hes1 only in mutant NSCs normalizes NOTCH activation and resumes proliferation and neurogenesis not only in NSCs, but especially in basal progenitors. Since pharmacological blockade of NOTCH signaling also promotes proliferation of basal progenitors, we conclude that TLX, by repressing Hes1 expression, counteracts quiescence and NOTCH activation in NSCs, thereby relieving NOTCH-mediated lateral inhibition of proliferation in basal progenitors.
format Online
Article
Text
id pubmed-6626847
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-66268472019-07-23 The Orphan Nuclear Receptor TLX Represses Hes1 Expression, Thereby Affecting NOTCH Signaling and Lineage Progression in the Adult SEZ Luque-Molina, Inma Shi, Yan Abdullah, Yomn Monaco, Sara Hölzl-Wenig, Gabriele Mandl, Claudia Ciccolini, Francesca Stem Cell Reports Article In the adult subependymal zone (SEZ), neural stem cells (NSCs) apically contacting the lateral ventricle on activation generate progenitors proliferating at the niche basal side. We here show that Tailless (TLX) coordinates NSC activation and basal progenitor proliferation by repressing the NOTCH effector Hes1. Consistent with this, besides quiescence Hes1 expression also increases on Tlx mutation. Since HES1 levels are higher at the apical SEZ, NOTCH activation is increased in Tlx(−/−) NSCs, but not in surrounding basal progenitors. Underscoring the causative relationship between higher HES1/NOTCH and increased quiescence, downregulation of Hes1 only in mutant NSCs normalizes NOTCH activation and resumes proliferation and neurogenesis not only in NSCs, but especially in basal progenitors. Since pharmacological blockade of NOTCH signaling also promotes proliferation of basal progenitors, we conclude that TLX, by repressing Hes1 expression, counteracts quiescence and NOTCH activation in NSCs, thereby relieving NOTCH-mediated lateral inhibition of proliferation in basal progenitors. Elsevier 2019-06-06 /pmc/articles/PMC6626847/ /pubmed/31178417 http://dx.doi.org/10.1016/j.stemcr.2019.05.004 Text en © 2019 The Author(s) http://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 Article
Luque-Molina, Inma
Shi, Yan
Abdullah, Yomn
Monaco, Sara
Hölzl-Wenig, Gabriele
Mandl, Claudia
Ciccolini, Francesca
The Orphan Nuclear Receptor TLX Represses Hes1 Expression, Thereby Affecting NOTCH Signaling and Lineage Progression in the Adult SEZ
title The Orphan Nuclear Receptor TLX Represses Hes1 Expression, Thereby Affecting NOTCH Signaling and Lineage Progression in the Adult SEZ
title_full The Orphan Nuclear Receptor TLX Represses Hes1 Expression, Thereby Affecting NOTCH Signaling and Lineage Progression in the Adult SEZ
title_fullStr The Orphan Nuclear Receptor TLX Represses Hes1 Expression, Thereby Affecting NOTCH Signaling and Lineage Progression in the Adult SEZ
title_full_unstemmed The Orphan Nuclear Receptor TLX Represses Hes1 Expression, Thereby Affecting NOTCH Signaling and Lineage Progression in the Adult SEZ
title_short The Orphan Nuclear Receptor TLX Represses Hes1 Expression, Thereby Affecting NOTCH Signaling and Lineage Progression in the Adult SEZ
title_sort orphan nuclear receptor tlx represses hes1 expression, thereby affecting notch signaling and lineage progression in the adult sez
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6626847/
https://www.ncbi.nlm.nih.gov/pubmed/31178417
http://dx.doi.org/10.1016/j.stemcr.2019.05.004
work_keys_str_mv AT luquemolinainma theorphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT shiyan theorphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT abdullahyomn theorphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT monacosara theorphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT holzlweniggabriele theorphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT mandlclaudia theorphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT ciccolinifrancesca theorphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT luquemolinainma orphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT shiyan orphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT abdullahyomn orphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT monacosara orphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT holzlweniggabriele orphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT mandlclaudia orphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez
AT ciccolinifrancesca orphannuclearreceptortlxrepresseshes1expressiontherebyaffectingnotchsignalingandlineageprogressionintheadultsez