Cargando…

Expression of mutant exon 1 huntingtin fragments in human neural stem cells and neurons causes inclusion formation and mitochondrial dysfunction

Robust cellular models are key in determining pathological mechanisms that lead to neurotoxicity in Huntington's disease (HD) and for high throughput pre‐clinical screening of potential therapeutic compounds. Such models exist but mostly comprise non‐human or non‐neuronal cells that may not rec...

Descripción completa

Detalles Bibliográficos
Autores principales: Ghosh, Rhia, Wood‐Kaczmar, Alison, Dobson, Lucianne, Smith, Edward J., Sirinathsinghji, Eva C., Kriston‐Vizi, Janos, Hargreaves, Iain P., Heaton, Robert, Herrmann, Frank, Abramov, Andrey Y., Lam, Amanda J., Heales, Simon J., Ketteler, Robin, Bates, Gillian P., Andre, Ralph, Tabrizi, Sarah J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8432155/
https://www.ncbi.nlm.nih.gov/pubmed/32329133
http://dx.doi.org/10.1096/fj.201902277RR
_version_ 1783751098273628160
author Ghosh, Rhia
Wood‐Kaczmar, Alison
Dobson, Lucianne
Smith, Edward J.
Sirinathsinghji, Eva C.
Kriston‐Vizi, Janos
Hargreaves, Iain P.
Heaton, Robert
Herrmann, Frank
Abramov, Andrey Y.
Lam, Amanda J.
Heales, Simon J.
Ketteler, Robin
Bates, Gillian P.
Andre, Ralph
Tabrizi, Sarah J.
author_facet Ghosh, Rhia
Wood‐Kaczmar, Alison
Dobson, Lucianne
Smith, Edward J.
Sirinathsinghji, Eva C.
Kriston‐Vizi, Janos
Hargreaves, Iain P.
Heaton, Robert
Herrmann, Frank
Abramov, Andrey Y.
Lam, Amanda J.
Heales, Simon J.
Ketteler, Robin
Bates, Gillian P.
Andre, Ralph
Tabrizi, Sarah J.
author_sort Ghosh, Rhia
collection PubMed
description Robust cellular models are key in determining pathological mechanisms that lead to neurotoxicity in Huntington's disease (HD) and for high throughput pre‐clinical screening of potential therapeutic compounds. Such models exist but mostly comprise non‐human or non‐neuronal cells that may not recapitulate the correct biochemical milieu involved in pathology. We have developed a new human neuronal cell model of HD, using neural stem cells (ReNcell VM NSCs) stably transduced to express exon 1 huntingtin (HTT) fragments with variable length polyglutamine (polyQ) tracts. Using a system with matched expression levels of exon 1 HTT fragments, we investigated the effect of increasing polyQ repeat length on HTT inclusion formation, location, neuronal survival, and mitochondrial function with a view to creating an in vitro screening platform for therapeutic screening. We found that expression of exon 1 HTT fragments with longer polyQ tracts led to the formation of intra‐nuclear inclusions in a polyQ length‐dependent manner during neurogenesis. There was no overt effect on neuronal viability, but defects of mitochondrial function were found in the pathogenic lines. Thus, we have a human neuronal cell model of HD that may recapitulate some of the earliest stages of HD pathogenesis, namely inclusion formation and mitochondrial dysfunction.
format Online
Article
Text
id pubmed-8432155
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-84321552021-09-14 Expression of mutant exon 1 huntingtin fragments in human neural stem cells and neurons causes inclusion formation and mitochondrial dysfunction Ghosh, Rhia Wood‐Kaczmar, Alison Dobson, Lucianne Smith, Edward J. Sirinathsinghji, Eva C. Kriston‐Vizi, Janos Hargreaves, Iain P. Heaton, Robert Herrmann, Frank Abramov, Andrey Y. Lam, Amanda J. Heales, Simon J. Ketteler, Robin Bates, Gillian P. Andre, Ralph Tabrizi, Sarah J. FASEB J Research Articles Robust cellular models are key in determining pathological mechanisms that lead to neurotoxicity in Huntington's disease (HD) and for high throughput pre‐clinical screening of potential therapeutic compounds. Such models exist but mostly comprise non‐human or non‐neuronal cells that may not recapitulate the correct biochemical milieu involved in pathology. We have developed a new human neuronal cell model of HD, using neural stem cells (ReNcell VM NSCs) stably transduced to express exon 1 huntingtin (HTT) fragments with variable length polyglutamine (polyQ) tracts. Using a system with matched expression levels of exon 1 HTT fragments, we investigated the effect of increasing polyQ repeat length on HTT inclusion formation, location, neuronal survival, and mitochondrial function with a view to creating an in vitro screening platform for therapeutic screening. We found that expression of exon 1 HTT fragments with longer polyQ tracts led to the formation of intra‐nuclear inclusions in a polyQ length‐dependent manner during neurogenesis. There was no overt effect on neuronal viability, but defects of mitochondrial function were found in the pathogenic lines. Thus, we have a human neuronal cell model of HD that may recapitulate some of the earliest stages of HD pathogenesis, namely inclusion formation and mitochondrial dysfunction. John Wiley and Sons Inc. 2020-04-23 2020-06 /pmc/articles/PMC8432155/ /pubmed/32329133 http://dx.doi.org/10.1096/fj.201902277RR Text en © 2020 The Authors. The FASEB Journal published by Wiley Periodicals LLC on behalf of Federation of American Societies for Experimental Biology 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 Research Articles
Ghosh, Rhia
Wood‐Kaczmar, Alison
Dobson, Lucianne
Smith, Edward J.
Sirinathsinghji, Eva C.
Kriston‐Vizi, Janos
Hargreaves, Iain P.
Heaton, Robert
Herrmann, Frank
Abramov, Andrey Y.
Lam, Amanda J.
Heales, Simon J.
Ketteler, Robin
Bates, Gillian P.
Andre, Ralph
Tabrizi, Sarah J.
Expression of mutant exon 1 huntingtin fragments in human neural stem cells and neurons causes inclusion formation and mitochondrial dysfunction
title Expression of mutant exon 1 huntingtin fragments in human neural stem cells and neurons causes inclusion formation and mitochondrial dysfunction
title_full Expression of mutant exon 1 huntingtin fragments in human neural stem cells and neurons causes inclusion formation and mitochondrial dysfunction
title_fullStr Expression of mutant exon 1 huntingtin fragments in human neural stem cells and neurons causes inclusion formation and mitochondrial dysfunction
title_full_unstemmed Expression of mutant exon 1 huntingtin fragments in human neural stem cells and neurons causes inclusion formation and mitochondrial dysfunction
title_short Expression of mutant exon 1 huntingtin fragments in human neural stem cells and neurons causes inclusion formation and mitochondrial dysfunction
title_sort expression of mutant exon 1 huntingtin fragments in human neural stem cells and neurons causes inclusion formation and mitochondrial dysfunction
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8432155/
https://www.ncbi.nlm.nih.gov/pubmed/32329133
http://dx.doi.org/10.1096/fj.201902277RR
work_keys_str_mv AT ghoshrhia expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT woodkaczmaralison expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT dobsonlucianne expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT smithedwardj expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT sirinathsinghjievac expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT kristonvizijanos expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT hargreavesiainp expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT heatonrobert expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT herrmannfrank expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT abramovandreyy expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT lamamandaj expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT healessimonj expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT kettelerrobin expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT batesgillianp expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT andreralph expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction
AT tabrizisarahj expressionofmutantexon1huntingtinfragmentsinhumanneuralstemcellsandneuronscausesinclusionformationandmitochondrialdysfunction