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Presenilin mutations and their impact on neuronal differentiation in Alzheimer’s disease

The presenilin genes (PSEN1 and PSEN2) are mainly responsible for causing early-onset familial Alzheimer’s disease, harboring ~300 causative mutations, and representing ~90% of all mutations associated with a very aggressive disease form. Presenilin 1 is the catalytic core of the γ-secretase complex...

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Autores principales: Hernández-Sapiéns, Mercedes A., Reza-Zaldívar, Edwin E., Márquez-Aguirre, Ana L., Gómez-Pinedo, Ulises, Matias-Guiu, Jorge, Cevallos, Ricardo R., Mateos-Díaz, Juan C., Sánchez-González, Víctor J., Canales-Aguirre, Alejandro A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Wolters Kluwer - Medknow 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8451546/
https://www.ncbi.nlm.nih.gov/pubmed/34100423
http://dx.doi.org/10.4103/1673-5374.313016
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author Hernández-Sapiéns, Mercedes A.
Reza-Zaldívar, Edwin E.
Márquez-Aguirre, Ana L.
Gómez-Pinedo, Ulises
Matias-Guiu, Jorge
Cevallos, Ricardo R.
Mateos-Díaz, Juan C.
Sánchez-González, Víctor J.
Canales-Aguirre, Alejandro A.
author_facet Hernández-Sapiéns, Mercedes A.
Reza-Zaldívar, Edwin E.
Márquez-Aguirre, Ana L.
Gómez-Pinedo, Ulises
Matias-Guiu, Jorge
Cevallos, Ricardo R.
Mateos-Díaz, Juan C.
Sánchez-González, Víctor J.
Canales-Aguirre, Alejandro A.
author_sort Hernández-Sapiéns, Mercedes A.
collection PubMed
description The presenilin genes (PSEN1 and PSEN2) are mainly responsible for causing early-onset familial Alzheimer’s disease, harboring ~300 causative mutations, and representing ~90% of all mutations associated with a very aggressive disease form. Presenilin 1 is the catalytic core of the γ-secretase complex that conducts the intramembranous proteolytic excision of multiple transmembrane proteins like the amyloid precursor protein, Notch-1, N- and E-cadherin, LRP, Syndecan, Delta, Jagged, CD44, ErbB4, and Nectin1a. Presenilin 1 plays an essential role in neural progenitor maintenance, neurogenesis, neurite outgrowth, synaptic function, neuronal function, myelination, and plasticity. Therefore, an imbalance caused by mutations in presenilin 1/γ-secretase might cause aberrant signaling, synaptic dysfunction, memory impairment, and increased Aβ(42)/Aβ(40) ratio, contributing to neurodegeneration during the initial stages of Alzheimer’s disease pathogenesis. This review focuses on the neuronal differentiation dysregulation mediated by PSEN1 mutations in Alzheimer’s disease. Furthermore, we emphasize the importance of Alzheimer’s disease-induced pluripotent stem cells models in analyzing PSEN1 mutations implication over the early stages of the Alzheimer’s disease pathogenesis throughout neuronal differentiation impairment.
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spelling pubmed-84515462021-10-18 Presenilin mutations and their impact on neuronal differentiation in Alzheimer’s disease Hernández-Sapiéns, Mercedes A. Reza-Zaldívar, Edwin E. Márquez-Aguirre, Ana L. Gómez-Pinedo, Ulises Matias-Guiu, Jorge Cevallos, Ricardo R. Mateos-Díaz, Juan C. Sánchez-González, Víctor J. Canales-Aguirre, Alejandro A. Neural Regen Res Review The presenilin genes (PSEN1 and PSEN2) are mainly responsible for causing early-onset familial Alzheimer’s disease, harboring ~300 causative mutations, and representing ~90% of all mutations associated with a very aggressive disease form. Presenilin 1 is the catalytic core of the γ-secretase complex that conducts the intramembranous proteolytic excision of multiple transmembrane proteins like the amyloid precursor protein, Notch-1, N- and E-cadherin, LRP, Syndecan, Delta, Jagged, CD44, ErbB4, and Nectin1a. Presenilin 1 plays an essential role in neural progenitor maintenance, neurogenesis, neurite outgrowth, synaptic function, neuronal function, myelination, and plasticity. Therefore, an imbalance caused by mutations in presenilin 1/γ-secretase might cause aberrant signaling, synaptic dysfunction, memory impairment, and increased Aβ(42)/Aβ(40) ratio, contributing to neurodegeneration during the initial stages of Alzheimer’s disease pathogenesis. This review focuses on the neuronal differentiation dysregulation mediated by PSEN1 mutations in Alzheimer’s disease. Furthermore, we emphasize the importance of Alzheimer’s disease-induced pluripotent stem cells models in analyzing PSEN1 mutations implication over the early stages of the Alzheimer’s disease pathogenesis throughout neuronal differentiation impairment. Wolters Kluwer - Medknow 2021-06-07 /pmc/articles/PMC8451546/ /pubmed/34100423 http://dx.doi.org/10.4103/1673-5374.313016 Text en Copyright: © Neural Regeneration Research https://creativecommons.org/licenses/by-nc-sa/4.0/This is an open access journal, and articles are distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 License, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
spellingShingle Review
Hernández-Sapiéns, Mercedes A.
Reza-Zaldívar, Edwin E.
Márquez-Aguirre, Ana L.
Gómez-Pinedo, Ulises
Matias-Guiu, Jorge
Cevallos, Ricardo R.
Mateos-Díaz, Juan C.
Sánchez-González, Víctor J.
Canales-Aguirre, Alejandro A.
Presenilin mutations and their impact on neuronal differentiation in Alzheimer’s disease
title Presenilin mutations and their impact on neuronal differentiation in Alzheimer’s disease
title_full Presenilin mutations and their impact on neuronal differentiation in Alzheimer’s disease
title_fullStr Presenilin mutations and their impact on neuronal differentiation in Alzheimer’s disease
title_full_unstemmed Presenilin mutations and their impact on neuronal differentiation in Alzheimer’s disease
title_short Presenilin mutations and their impact on neuronal differentiation in Alzheimer’s disease
title_sort presenilin mutations and their impact on neuronal differentiation in alzheimer’s disease
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8451546/
https://www.ncbi.nlm.nih.gov/pubmed/34100423
http://dx.doi.org/10.4103/1673-5374.313016
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