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The unfolded protein response transcription factor XBP1s ameliorates Alzheimer’s disease by improving synaptic function and proteostasis
Claudia Duran‐Aniotz, Natalia Poblete, Catalina Rivera-Krstulovic, Álvaro O. Ardiles, Mei Li Díaz-Hung, Giovanni Tamburini, Carleen Mae P. Sabusap, Yannis Gerakis, Felipe Cabral‐Miranda, Javier Diaz, Matías Fuentealba, Diego Arriagada, Ernesto Germán Cardona-Muñóz, Sandra Espinoza, Gabriela Martínez
Molecular Therapy · 2023 · ▲ 66 citations
Abstract
Alteration in the buffering capacity of the proteostasis(definition) network is an emerging feature of Alzheimer's disease (AD), highlighting the occurrence of endoplasmic reticulum (ER) stress. The unfolded protein response (UPR) is the main adaptive pathway to cope with protein folding stress at the ER. Inositol-requiring enzyme-1 (IRE1) operates as a central ER stress sensor, enabling the establishment of adaptive and repair programs through the control of the expression of the transcription factor X-box binding protein 1 (XBP1). To artificially enforce the adaptive capacity of the UPR in the AD brain, we developed strategies to express the active form of XBP1 in the brain. Overexpression of XBP1 in the nervous system using transgenic mice reduced the load of amyloid deposits and preserved synaptic and cognitive function. Moreover, local delivery of XBP1 into the hippocampus of an 5xFAD mice using adeno-associated vectors improved different AD features. XBP1 expression corrected a large proportion of the proteomic alterations observed in the AD model, restoring the levels of several synaptic proteins and factors involved in actin cytoskeleton regulation and axonal growth. Our results illustrate the therapeutic potential of targeting UPR-dependent gene expression programs as a strategy to ameliorate AD features and sustain synaptic function.
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- 10.1016/j.ymthe.2023.03.028
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- 2026-09-10 MST
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APA
Duran‐Aniotz, C., Poblete, N., Rivera-Krstulovic, C., Ardiles, �.O., Díaz-Hung, M.L., Tamburini, G., Sabusap, C.M.P., Gerakis, Y., Cabral‐Miranda, F., Diaz, J., Fuentealba, M., Arriagada, D., Cardona-Muñóz, E.G., Espinoza, S., Martínez, G., Quiroz, G., Sardi, P., Medinas, D.B., Contreras, D., & Piña, R. (2023). The unfolded protein response transcription factor XBP1s ameliorates Alzheimer’s disease by improving synaptic function and proteostasis. <em>Molecular Therapy</em>. https://doi.org/10.1016/j.ymthe.2023.03.028
Vancouver
Duran‐Aniotz C, Poblete N, Rivera-Krstulovic C, Ardiles �O, Díaz-Hung ML, Tamburini G, et al. The unfolded protein response transcription factor XBP1s ameliorates Alzheimer’s disease by improving synaptic function and proteostasis. Molecular Therapy. 2023. doi:10.1016/j.ymthe.2023.03.028.
BibTeX
@article{claudia2023Theunf,
title = {The unfolded protein response transcription factor XBP1s ameliorates Alzheimer’s disease by improving synaptic function and proteostasis},
author = {Claudia Duran‐Aniotz and Natalia Poblete and Catalina Rivera-Krstulovic and Álvaro O. Ardiles and Mei Li Díaz-Hung and Giovanni Tamburini and Carleen Mae P. Sabusap and Yannis Gerakis and Felipe Cabral‐Miranda and Javier Diaz and Matías Fuentealba and Diego Arriagada and Ernesto Germán Cardona-Muñóz and Sandra Espinoza and Gabriela Martínez and Gabriel Quiroz and Pablo Sardi and Danilo B. Medinas and Darwin Contreras and Ricardo Piña and Mychael V. Lourenco and Felipe C. Ribeiro and Sérgio T. Ferreira and Carlos Rozas and Bernardo Morales},
journal = {Molecular Therapy},
year = {2023},
doi = {10.1016/j.ymthe.2023.03.028},
}
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