Cargando…

Developmental regulation of tau splicing is disrupted in stem cell-derived neurons from frontotemporal dementia patients with the 10 + 16 splice-site mutation in MAPT

The alternative splicing of the tau gene, MAPT, generates six protein isoforms in the adult human central nervous system (CNS). Tau splicing is developmentally regulated and dysregulated in disease. Mutations in MAPT that alter tau splicing cause frontotemporal dementia (FTD) with tau pathology, pro...

Descripción completa

Detalles Bibliográficos
Autores principales: Sposito, Teresa, Preza, Elisavet, Mahoney, Colin J., Setó-Salvia, Núria, Ryan, Natalie S., Morris, Huw R., Arber, Charles, Devine, Michael J., Houlden, Henry, Warner, Thomas T., Bushell, Trevor J., Zagnoni, Michele, Kunath, Tilo, Livesey, Frederick J., Fox, Nick C., Rossor, Martin N., Hardy, John, Wray, Selina
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4550814/
https://www.ncbi.nlm.nih.gov/pubmed/26136155
http://dx.doi.org/10.1093/hmg/ddv246
_version_ 1782387505995186176
author Sposito, Teresa
Preza, Elisavet
Mahoney, Colin J.
Setó-Salvia, Núria
Ryan, Natalie S.
Morris, Huw R.
Arber, Charles
Devine, Michael J.
Houlden, Henry
Warner, Thomas T.
Bushell, Trevor J.
Zagnoni, Michele
Kunath, Tilo
Livesey, Frederick J.
Fox, Nick C.
Rossor, Martin N.
Hardy, John
Wray, Selina
author_facet Sposito, Teresa
Preza, Elisavet
Mahoney, Colin J.
Setó-Salvia, Núria
Ryan, Natalie S.
Morris, Huw R.
Arber, Charles
Devine, Michael J.
Houlden, Henry
Warner, Thomas T.
Bushell, Trevor J.
Zagnoni, Michele
Kunath, Tilo
Livesey, Frederick J.
Fox, Nick C.
Rossor, Martin N.
Hardy, John
Wray, Selina
author_sort Sposito, Teresa
collection PubMed
description The alternative splicing of the tau gene, MAPT, generates six protein isoforms in the adult human central nervous system (CNS). Tau splicing is developmentally regulated and dysregulated in disease. Mutations in MAPT that alter tau splicing cause frontotemporal dementia (FTD) with tau pathology, providing evidence for a causal link between altered tau splicing and disease. The use of induced pluripotent stem cell (iPSC)-derived neurons has revolutionized the way we model neurological disease in vitro. However, as most tau mutations are located within or around the alternatively spliced exon 10, it is important that iPSC–neurons splice tau appropriately in order to be used as disease models. To address this issue, we analyzed the expression and splicing of tau in iPSC-derived cortical neurons from control patients and FTD patients with the 10 + 16 intronic mutation in MAPT. We show that control neurons only express the fetal tau isoform (0N3R), even at extended time points of 100 days in vitro. Neurons from FTD patients with the 10 + 16 mutation in MAPT express both 0N3R and 0N4R tau isoforms, demonstrating that this mutation overrides the developmental regulation of exon 10 inclusion in our in vitro model. Further, at extended time points of 365 days in vitro, we observe a switch in tau splicing to include six tau isoforms as seen in the adult human CNS. Our results demonstrate the importance of neuronal maturity for use in in vitro modeling and provide a system that will be important for understanding the functional consequences of altered tau splicing.
format Online
Article
Text
id pubmed-4550814
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-45508142015-08-28 Developmental regulation of tau splicing is disrupted in stem cell-derived neurons from frontotemporal dementia patients with the 10 + 16 splice-site mutation in MAPT Sposito, Teresa Preza, Elisavet Mahoney, Colin J. Setó-Salvia, Núria Ryan, Natalie S. Morris, Huw R. Arber, Charles Devine, Michael J. Houlden, Henry Warner, Thomas T. Bushell, Trevor J. Zagnoni, Michele Kunath, Tilo Livesey, Frederick J. Fox, Nick C. Rossor, Martin N. Hardy, John Wray, Selina Hum Mol Genet Articles The alternative splicing of the tau gene, MAPT, generates six protein isoforms in the adult human central nervous system (CNS). Tau splicing is developmentally regulated and dysregulated in disease. Mutations in MAPT that alter tau splicing cause frontotemporal dementia (FTD) with tau pathology, providing evidence for a causal link between altered tau splicing and disease. The use of induced pluripotent stem cell (iPSC)-derived neurons has revolutionized the way we model neurological disease in vitro. However, as most tau mutations are located within or around the alternatively spliced exon 10, it is important that iPSC–neurons splice tau appropriately in order to be used as disease models. To address this issue, we analyzed the expression and splicing of tau in iPSC-derived cortical neurons from control patients and FTD patients with the 10 + 16 intronic mutation in MAPT. We show that control neurons only express the fetal tau isoform (0N3R), even at extended time points of 100 days in vitro. Neurons from FTD patients with the 10 + 16 mutation in MAPT express both 0N3R and 0N4R tau isoforms, demonstrating that this mutation overrides the developmental regulation of exon 10 inclusion in our in vitro model. Further, at extended time points of 365 days in vitro, we observe a switch in tau splicing to include six tau isoforms as seen in the adult human CNS. Our results demonstrate the importance of neuronal maturity for use in in vitro modeling and provide a system that will be important for understanding the functional consequences of altered tau splicing. Oxford University Press 2015-09-15 2015-07-01 /pmc/articles/PMC4550814/ /pubmed/26136155 http://dx.doi.org/10.1093/hmg/ddv246 Text en © The Author 2015. Published by Oxford University Press. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Sposito, Teresa
Preza, Elisavet
Mahoney, Colin J.
Setó-Salvia, Núria
Ryan, Natalie S.
Morris, Huw R.
Arber, Charles
Devine, Michael J.
Houlden, Henry
Warner, Thomas T.
Bushell, Trevor J.
Zagnoni, Michele
Kunath, Tilo
Livesey, Frederick J.
Fox, Nick C.
Rossor, Martin N.
Hardy, John
Wray, Selina
Developmental regulation of tau splicing is disrupted in stem cell-derived neurons from frontotemporal dementia patients with the 10 + 16 splice-site mutation in MAPT
title Developmental regulation of tau splicing is disrupted in stem cell-derived neurons from frontotemporal dementia patients with the 10 + 16 splice-site mutation in MAPT
title_full Developmental regulation of tau splicing is disrupted in stem cell-derived neurons from frontotemporal dementia patients with the 10 + 16 splice-site mutation in MAPT
title_fullStr Developmental regulation of tau splicing is disrupted in stem cell-derived neurons from frontotemporal dementia patients with the 10 + 16 splice-site mutation in MAPT
title_full_unstemmed Developmental regulation of tau splicing is disrupted in stem cell-derived neurons from frontotemporal dementia patients with the 10 + 16 splice-site mutation in MAPT
title_short Developmental regulation of tau splicing is disrupted in stem cell-derived neurons from frontotemporal dementia patients with the 10 + 16 splice-site mutation in MAPT
title_sort developmental regulation of tau splicing is disrupted in stem cell-derived neurons from frontotemporal dementia patients with the 10 + 16 splice-site mutation in mapt
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4550814/
https://www.ncbi.nlm.nih.gov/pubmed/26136155
http://dx.doi.org/10.1093/hmg/ddv246
work_keys_str_mv AT spositoteresa developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT prezaelisavet developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT mahoneycolinj developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT setosalvianuria developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT ryannatalies developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT morrishuwr developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT arbercharles developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT devinemichaelj developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT houldenhenry developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT warnerthomast developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT bushelltrevorj developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT zagnonimichele developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT kunathtilo developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT liveseyfrederickj developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT foxnickc developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT rossormartinn developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT hardyjohn developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt
AT wrayselina developmentalregulationoftausplicingisdisruptedinstemcellderivedneuronsfromfrontotemporaldementiapatientswiththe1016splicesitemutationinmapt