Genetically Engineered Triple MAPT-Mutant Human-Induced Pluripotent Stem Cells (N279K, P301L, and E10+16 Mutations) Exhibit Impairments in Mitochondrial Bioenergetics and Dynamics.

dc.centroFacultad de Cienciases_ES
dc.contributor.authorSzabo, Leonora
dc.contributor.authorGrimm, Amandine
dc.contributor.authorGarcía-León, Juan Antonio
dc.contributor.authorVerfaillie, Catherine M.
dc.contributor.authorEckert, Anne
dc.date.accessioned2023-07-06T10:30:30Z
dc.date.available2023-07-06T10:30:30Z
dc.date.created2023-07-03
dc.date.issued2023-05-13
dc.departamentoIBIMA. Instituto de Investigación Biomédica de Málaga
dc.description.abstractPathological abnormalities in the tau protein give rise to a variety of neurodegenerative diseases, conjointly termed tauopathies. Several tau mutations have been identified in the tau-encoding gene MAPT, affecting either the physical properties of tau or resulting in altered tau splicing. At early disease stages, mitochondrial dysfunction was highlighted with mutant tau compromising almost every aspect of mitochondrial function. Additionally, mitochondria have emerged as fundamental regulators of stem cell function. Here, we show that compared to the isogenic wild-type triple MAPT-mutant human-induced pluripotent stem cells, bearing the pathogenic N279K, P301L, and E10+16 mutations, exhibit deficits in mitochondrial bioenergetics and present altered parameters linked to the metabolic regulation of mitochondria. Moreover, we demonstrate that the triple tau mutations disturb the cellular redox homeostasis and modify the mitochondrial network morphology and distribution. This study provides the first characterization of disease-associated tau-mediated mitochondrial impairments in an advanced human cellular tau pathology model at early disease stages, ranging from mitochondrial bioenergetics to dynamics. Consequently, comprehending better the influence of dysfunctional mitochondria on the development and differentiation of stem cells and their contribution to disease progression may thus assist in the potential prevention and treatment of tau-related neurodegeneration.es_ES
dc.description.sponsorshipPartial funding for open access charge: Universidad de Málagaes_ES
dc.identifier.citationSzabo L, Grimm A, García-León JA, Verfaillie CM, Eckert A. Genetically Engineered Triple MAPT-Mutant Human-Induced Pluripotent Stem Cells (N279K, P301L, and E10+16 Mutations) Exhibit Impairments in Mitochondrial Bioenergetics and Dynamics. Cells. 2023; 12(10):1385. https://doi.org/10.3390/cells12101385es_ES
dc.identifier.doi10.3390/cells12101385
dc.identifier.urihttps://hdl.handle.net/10630/27196
dc.language.isoenges_ES
dc.publisherMDPIes_ES
dc.rightsAtribución 4.0 Internacional*
dc.rights.accessRightsopen accesses_ES
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/*
dc.subjectTubulinases_ES
dc.subjectEstrés oxidativoes_ES
dc.subjectMitocondriases_ES
dc.subject.otherTau proteines_ES
dc.subject.otherInduced pluripotent stem cellses_ES
dc.subject.otherMitochondriaes_ES
dc.subject.otherBioenergeticses_ES
dc.subject.otherOxidative stresses_ES
dc.subject.otherDynamicses_ES
dc.titleGenetically Engineered Triple MAPT-Mutant Human-Induced Pluripotent Stem Cells (N279K, P301L, and E10+16 Mutations) Exhibit Impairments in Mitochondrial Bioenergetics and Dynamics.es_ES
dc.typejournal articlees_ES
dc.type.hasVersionVoRes_ES
dspace.entity.typePublication
relation.isAuthorOfPublication576d499e-904a-4f51-887e-13395c761574
relation.isAuthorOfPublication.latestForDiscovery576d499e-904a-4f51-887e-13395c761574

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