TY - JOUR
T1 - Early maturation and distinct tau pathology in induced pluripotent stem cell-derived neurons from patients with MAPT mutations
AU - Iovino, Mariangela
AU - Agathou, Sylvia
AU - González-Rueda, Ana
AU - Del Castillo Velasco-Herrera, Martin
AU - Borroni, Barbara
AU - Alberici, Antonella
AU - Lynch, Timothy
AU - O'Dowd, Sean
AU - Geti, Imbisaat
AU - Gaffney, Daniel
AU - Vallier, Ludovic
AU - Paulsen, Ole
AU - Káradóttir, Ragnhildur Thóra
AU - Spillantini, Maria Grazia
N1 - Publisher Copyright: © 2015 The Author (2015). Published by Oxford University Press on behalf of the Guarantors of Brain.
PY - 2015/11
Y1 - 2015/11
N2 - Tauopathies, such as Alzheimer's disease, some cases of frontotemporal dementia, corticobasal degeneration and progressive supranuclear palsy, are characterized by aggregates of the microtubule-associated protein tau, which are linked to neuronal death and disease development and can be caused by mutations in the MAPT gene. Six tau isoforms are present in the adult human brain and they differ by the presence of 3(3R) or 4(4R) C-terminal repeats. Only the shortest 3R isoform is present in foetal brain. MAPT mutations found in human disease affect tau binding to microtubules or the 3R:4R isoform ratio by altering exon 10 splicing. We have differentiated neurons from induced pluripotent stem cells derived from fibroblasts of controls and patients with N279K and P301L MAPT mutations. Induced pluripotent stem cell-derived neurons recapitulate developmental tau expression, showing the adult brain tau isoforms after several months in culture. Both N279K and P301L neurons exhibit earlier electrophysiological maturation and altered mitochondrial transport compared to controls. Specifically, the N279K neurons show abnormally premature developmental 4R tau expression, including changes in the 3R:4R isoform ratio and AT100-hyperphosphorylated tau aggregates, while P301L neurons are characterized by contorted processes with varicosity-like structures, some containing both alpha-synuclein and 4R tau. The previously unreported faster maturation of MAPT mutant human neurons, the developmental expression of 4R tau and the morphological alterations may contribute to disease development.
AB - Tauopathies, such as Alzheimer's disease, some cases of frontotemporal dementia, corticobasal degeneration and progressive supranuclear palsy, are characterized by aggregates of the microtubule-associated protein tau, which are linked to neuronal death and disease development and can be caused by mutations in the MAPT gene. Six tau isoforms are present in the adult human brain and they differ by the presence of 3(3R) or 4(4R) C-terminal repeats. Only the shortest 3R isoform is present in foetal brain. MAPT mutations found in human disease affect tau binding to microtubules or the 3R:4R isoform ratio by altering exon 10 splicing. We have differentiated neurons from induced pluripotent stem cells derived from fibroblasts of controls and patients with N279K and P301L MAPT mutations. Induced pluripotent stem cell-derived neurons recapitulate developmental tau expression, showing the adult brain tau isoforms after several months in culture. Both N279K and P301L neurons exhibit earlier electrophysiological maturation and altered mitochondrial transport compared to controls. Specifically, the N279K neurons show abnormally premature developmental 4R tau expression, including changes in the 3R:4R isoform ratio and AT100-hyperphosphorylated tau aggregates, while P301L neurons are characterized by contorted processes with varicosity-like structures, some containing both alpha-synuclein and 4R tau. The previously unreported faster maturation of MAPT mutant human neurons, the developmental expression of 4R tau and the morphological alterations may contribute to disease development.
KW - FTDP-17T
KW - IPSC-derived neurons
KW - MAPT gene mutations
KW - microtubule-associated protein tau
KW - neurofibrillary tangles
UR - https://www.scopus.com/pages/publications/84947713425
U2 - 10.1093/brain/awv222
DO - 10.1093/brain/awv222
M3 - Article
C2 - 26220942
SN - 0006-8950
VL - 138
SP - 3345
EP - 3359
JO - Brain
JF - Brain
IS - 11
ER -