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Sonic Hedgehog Pathway Modulation Normalizes Expression of Olig2 in Rostrally Patterned NPCs With Trisomy 21

The intellectual disability found in people with Down syndrome is associated with numerous changes in early brain development, including the proliferation and differentiation of neural progenitor cells (NPCs) and the formation and maintenance of myelin in the brain. To study how early neural precurs...

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Autores principales: Klein, Jenny A., Li, Zhen, Rampam, Sanjeev, Cardini, Jack, Ayoub, Amara, Shaw, Patricia, Rachubinski, Angela L., Espinosa, Joaquin M., Zeldich, Ella, Haydar, Tarik F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8763807/
https://www.ncbi.nlm.nih.gov/pubmed/35058753
http://dx.doi.org/10.3389/fncel.2021.794675
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author Klein, Jenny A.
Li, Zhen
Rampam, Sanjeev
Cardini, Jack
Ayoub, Amara
Shaw, Patricia
Rachubinski, Angela L.
Espinosa, Joaquin M.
Zeldich, Ella
Haydar, Tarik F.
author_facet Klein, Jenny A.
Li, Zhen
Rampam, Sanjeev
Cardini, Jack
Ayoub, Amara
Shaw, Patricia
Rachubinski, Angela L.
Espinosa, Joaquin M.
Zeldich, Ella
Haydar, Tarik F.
author_sort Klein, Jenny A.
collection PubMed
description The intellectual disability found in people with Down syndrome is associated with numerous changes in early brain development, including the proliferation and differentiation of neural progenitor cells (NPCs) and the formation and maintenance of myelin in the brain. To study how early neural precursors are affected by trisomy 21, we differentiated two isogenic lines of induced pluripotent stem cells derived from people with Down syndrome into brain-like and spinal cord-like NPCs and promoted a transition towards oligodendroglial fate by activating the Sonic hedgehog (SHH) pathway. In the spinal cord-like trisomic cells, we found no difference in expression of OLIG2 or NKX2.2, two transcription factors essential for commitment to the oligodendrocyte lineage. However, in the brain-like trisomic NPCs, OLIG2 is significantly upregulated and is associated with reduced expression of NKX2.2. We found that this gene dysregulation and block in NPC transition can be normalized by increasing the concentration of a SHH pathway agonist (SAG) during differentiation. These results underscore the importance of regional and cell type differences in gene expression in Down syndrome and demonstrate that modulation of SHH signaling in trisomic cells can rescue an early perturbed step in neural lineage specification.
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spelling pubmed-87638072022-01-19 Sonic Hedgehog Pathway Modulation Normalizes Expression of Olig2 in Rostrally Patterned NPCs With Trisomy 21 Klein, Jenny A. Li, Zhen Rampam, Sanjeev Cardini, Jack Ayoub, Amara Shaw, Patricia Rachubinski, Angela L. Espinosa, Joaquin M. Zeldich, Ella Haydar, Tarik F. Front Cell Neurosci Cellular Neuroscience The intellectual disability found in people with Down syndrome is associated with numerous changes in early brain development, including the proliferation and differentiation of neural progenitor cells (NPCs) and the formation and maintenance of myelin in the brain. To study how early neural precursors are affected by trisomy 21, we differentiated two isogenic lines of induced pluripotent stem cells derived from people with Down syndrome into brain-like and spinal cord-like NPCs and promoted a transition towards oligodendroglial fate by activating the Sonic hedgehog (SHH) pathway. In the spinal cord-like trisomic cells, we found no difference in expression of OLIG2 or NKX2.2, two transcription factors essential for commitment to the oligodendrocyte lineage. However, in the brain-like trisomic NPCs, OLIG2 is significantly upregulated and is associated with reduced expression of NKX2.2. We found that this gene dysregulation and block in NPC transition can be normalized by increasing the concentration of a SHH pathway agonist (SAG) during differentiation. These results underscore the importance of regional and cell type differences in gene expression in Down syndrome and demonstrate that modulation of SHH signaling in trisomic cells can rescue an early perturbed step in neural lineage specification. Frontiers Media S.A. 2022-01-04 /pmc/articles/PMC8763807/ /pubmed/35058753 http://dx.doi.org/10.3389/fncel.2021.794675 Text en Copyright © 2022 Klein, Li, Rampam, Cardini, Ayoub, Shaw, Rachubinski, Espinosa, Zeldich and Haydar. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cellular Neuroscience
Klein, Jenny A.
Li, Zhen
Rampam, Sanjeev
Cardini, Jack
Ayoub, Amara
Shaw, Patricia
Rachubinski, Angela L.
Espinosa, Joaquin M.
Zeldich, Ella
Haydar, Tarik F.
Sonic Hedgehog Pathway Modulation Normalizes Expression of Olig2 in Rostrally Patterned NPCs With Trisomy 21
title Sonic Hedgehog Pathway Modulation Normalizes Expression of Olig2 in Rostrally Patterned NPCs With Trisomy 21
title_full Sonic Hedgehog Pathway Modulation Normalizes Expression of Olig2 in Rostrally Patterned NPCs With Trisomy 21
title_fullStr Sonic Hedgehog Pathway Modulation Normalizes Expression of Olig2 in Rostrally Patterned NPCs With Trisomy 21
title_full_unstemmed Sonic Hedgehog Pathway Modulation Normalizes Expression of Olig2 in Rostrally Patterned NPCs With Trisomy 21
title_short Sonic Hedgehog Pathway Modulation Normalizes Expression of Olig2 in Rostrally Patterned NPCs With Trisomy 21
title_sort sonic hedgehog pathway modulation normalizes expression of olig2 in rostrally patterned npcs with trisomy 21
topic Cellular Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8763807/
https://www.ncbi.nlm.nih.gov/pubmed/35058753
http://dx.doi.org/10.3389/fncel.2021.794675
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