Cargando…

Single-nuclei transcriptome analysis of Huntington disease iPSC and mouse astrocytes implicates maturation and functional deficits

Huntington disease (HD) is a neurodegenerative disorder caused by expanded CAG repeats in the huntingtin gene that alters cellular homeostasis, particularly in the striatum and cortex. Astrocyte signaling that establishes and maintains neuronal functions are often altered under pathological conditio...

Descripción completa

Detalles Bibliográficos
Autores principales: Reyes-Ortiz, Andrea M., Abud, Edsel M., Burns, Mara S., Wu, Jie, Hernandez, Sarah J., McClure, Nicolette, Wang, Keona Q., Schulz, Corey J., Miramontes, Ricardo, Lau, Alice, Michael, Neethu, Miyoshi, Emily, Van Vactor, David, Reidling, John C., Blurton-Jones, Mathew, Swarup, Vivek, Poon, Wayne W., Lim, Ryan G., Thompson, Leslie M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9800269/
https://www.ncbi.nlm.nih.gov/pubmed/36590162
http://dx.doi.org/10.1016/j.isci.2022.105732
_version_ 1784861259581095936
author Reyes-Ortiz, Andrea M.
Abud, Edsel M.
Burns, Mara S.
Wu, Jie
Hernandez, Sarah J.
McClure, Nicolette
Wang, Keona Q.
Schulz, Corey J.
Miramontes, Ricardo
Lau, Alice
Michael, Neethu
Miyoshi, Emily
Van Vactor, David
Reidling, John C.
Blurton-Jones, Mathew
Swarup, Vivek
Poon, Wayne W.
Lim, Ryan G.
Thompson, Leslie M.
author_facet Reyes-Ortiz, Andrea M.
Abud, Edsel M.
Burns, Mara S.
Wu, Jie
Hernandez, Sarah J.
McClure, Nicolette
Wang, Keona Q.
Schulz, Corey J.
Miramontes, Ricardo
Lau, Alice
Michael, Neethu
Miyoshi, Emily
Van Vactor, David
Reidling, John C.
Blurton-Jones, Mathew
Swarup, Vivek
Poon, Wayne W.
Lim, Ryan G.
Thompson, Leslie M.
author_sort Reyes-Ortiz, Andrea M.
collection PubMed
description Huntington disease (HD) is a neurodegenerative disorder caused by expanded CAG repeats in the huntingtin gene that alters cellular homeostasis, particularly in the striatum and cortex. Astrocyte signaling that establishes and maintains neuronal functions are often altered under pathological conditions. We performed single-nuclei RNA-sequencing on human HD patient-induced pluripotent stem cell (iPSC)-derived astrocytes and on striatal and cortical tissue from R6/2 HD mice to investigate high-resolution HD astrocyte cell state transitions. We observed altered maturation and glutamate signaling in HD human and mouse astrocytes. Human HD astrocytes also showed upregulated actin-mediated signaling, suggesting that some states may be cell-autonomous and human specific. In both species, astrogliogenesis transcription factors may drive HD astrocyte maturation deficits, which are supported by rescued climbing deficits in HD drosophila with NFIA knockdown. Thus, dysregulated HD astrocyte states may induce dysfunctional astrocytic properties, in part due to maturation deficits influenced by astrogliogenesis transcription factor dysregulation.
format Online
Article
Text
id pubmed-9800269
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-98002692022-12-31 Single-nuclei transcriptome analysis of Huntington disease iPSC and mouse astrocytes implicates maturation and functional deficits Reyes-Ortiz, Andrea M. Abud, Edsel M. Burns, Mara S. Wu, Jie Hernandez, Sarah J. McClure, Nicolette Wang, Keona Q. Schulz, Corey J. Miramontes, Ricardo Lau, Alice Michael, Neethu Miyoshi, Emily Van Vactor, David Reidling, John C. Blurton-Jones, Mathew Swarup, Vivek Poon, Wayne W. Lim, Ryan G. Thompson, Leslie M. iScience Article Huntington disease (HD) is a neurodegenerative disorder caused by expanded CAG repeats in the huntingtin gene that alters cellular homeostasis, particularly in the striatum and cortex. Astrocyte signaling that establishes and maintains neuronal functions are often altered under pathological conditions. We performed single-nuclei RNA-sequencing on human HD patient-induced pluripotent stem cell (iPSC)-derived astrocytes and on striatal and cortical tissue from R6/2 HD mice to investigate high-resolution HD astrocyte cell state transitions. We observed altered maturation and glutamate signaling in HD human and mouse astrocytes. Human HD astrocytes also showed upregulated actin-mediated signaling, suggesting that some states may be cell-autonomous and human specific. In both species, astrogliogenesis transcription factors may drive HD astrocyte maturation deficits, which are supported by rescued climbing deficits in HD drosophila with NFIA knockdown. Thus, dysregulated HD astrocyte states may induce dysfunctional astrocytic properties, in part due to maturation deficits influenced by astrogliogenesis transcription factor dysregulation. Elsevier 2022-12-06 /pmc/articles/PMC9800269/ /pubmed/36590162 http://dx.doi.org/10.1016/j.isci.2022.105732 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Reyes-Ortiz, Andrea M.
Abud, Edsel M.
Burns, Mara S.
Wu, Jie
Hernandez, Sarah J.
McClure, Nicolette
Wang, Keona Q.
Schulz, Corey J.
Miramontes, Ricardo
Lau, Alice
Michael, Neethu
Miyoshi, Emily
Van Vactor, David
Reidling, John C.
Blurton-Jones, Mathew
Swarup, Vivek
Poon, Wayne W.
Lim, Ryan G.
Thompson, Leslie M.
Single-nuclei transcriptome analysis of Huntington disease iPSC and mouse astrocytes implicates maturation and functional deficits
title Single-nuclei transcriptome analysis of Huntington disease iPSC and mouse astrocytes implicates maturation and functional deficits
title_full Single-nuclei transcriptome analysis of Huntington disease iPSC and mouse astrocytes implicates maturation and functional deficits
title_fullStr Single-nuclei transcriptome analysis of Huntington disease iPSC and mouse astrocytes implicates maturation and functional deficits
title_full_unstemmed Single-nuclei transcriptome analysis of Huntington disease iPSC and mouse astrocytes implicates maturation and functional deficits
title_short Single-nuclei transcriptome analysis of Huntington disease iPSC and mouse astrocytes implicates maturation and functional deficits
title_sort single-nuclei transcriptome analysis of huntington disease ipsc and mouse astrocytes implicates maturation and functional deficits
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9800269/
https://www.ncbi.nlm.nih.gov/pubmed/36590162
http://dx.doi.org/10.1016/j.isci.2022.105732
work_keys_str_mv AT reyesortizandream singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT abudedselm singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT burnsmaras singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT wujie singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT hernandezsarahj singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT mcclurenicolette singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT wangkeonaq singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT schulzcoreyj singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT miramontesricardo singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT laualice singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT michaelneethu singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT miyoshiemily singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT vanvactordavid singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT reidlingjohnc singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT blurtonjonesmathew singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT swarupvivek singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT poonwaynew singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT limryang singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits
AT thompsonlesliem singlenucleitranscriptomeanalysisofhuntingtondiseaseipscandmouseastrocytesimplicatesmaturationandfunctionaldeficits