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The Unfolded Protein Response in a Murine Model of Alzheimer’s Disease: Looking for Predictors

Alzheimer’s disease (AD) represents the most frequent type of dementia worldwide, and aging is the most important risk factor for the sporadic form of the pathology. The endoplasmic reticulum (ER), the main cellular actor involved in proteostasis, appears significantly compromised in AD due to the a...

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Autores principales: Sita, Giulia, Graziosi, Agnese, Corrieri, Camilla, Ghelli, Luca, Angelini, Sabrina, Cortelli, Pietro, Hrelia, Patrizia, Morroni, Fabiana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10671834/
https://www.ncbi.nlm.nih.gov/pubmed/38003389
http://dx.doi.org/10.3390/ijms242216200
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author Sita, Giulia
Graziosi, Agnese
Corrieri, Camilla
Ghelli, Luca
Angelini, Sabrina
Cortelli, Pietro
Hrelia, Patrizia
Morroni, Fabiana
author_facet Sita, Giulia
Graziosi, Agnese
Corrieri, Camilla
Ghelli, Luca
Angelini, Sabrina
Cortelli, Pietro
Hrelia, Patrizia
Morroni, Fabiana
author_sort Sita, Giulia
collection PubMed
description Alzheimer’s disease (AD) represents the most frequent type of dementia worldwide, and aging is the most important risk factor for the sporadic form of the pathology. The endoplasmic reticulum (ER), the main cellular actor involved in proteostasis, appears significantly compromised in AD due to the accumulation of the β-amyloid (Aβ) protein and the phosphorylated Tau protein. Increasing protein misfolding activates a specific cellular response known as Unfolded Protein Response (UPR), which orchestrates the recovery of ER function. The aim of the present study was to investigate the role of UPR in a murine model of AD induced by intracerebroventricular (i.c.v.) injection of Aβ(1–42) oligomers at 3 or 18 months. The oligomer injection in aged animals induced memory impairment, oxidative stress, and the depletion of glutathione reserve. Furthermore, the RNA sequencing and the bioinformatic analysis performed showed the enrichment of several pathways involved in neurodegeneration and protein regulations. The analysis highlighted the significant dysregulation of the protein kinase RNA-like ER kinase (PERK), inositol-requiring protein 1α (IRE1α) and activating transcription factor 6 (ATF-6). In turn, ER stress affected the PI3K/Akt/Gsk3β and MAPK/ERK pathways, highlighting Mapkapk5 as a potential marker, whose regulation could lead to the definition of new pharmacological and neuroprotective strategies to counteract AD.
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spelling pubmed-106718342023-11-11 The Unfolded Protein Response in a Murine Model of Alzheimer’s Disease: Looking for Predictors Sita, Giulia Graziosi, Agnese Corrieri, Camilla Ghelli, Luca Angelini, Sabrina Cortelli, Pietro Hrelia, Patrizia Morroni, Fabiana Int J Mol Sci Article Alzheimer’s disease (AD) represents the most frequent type of dementia worldwide, and aging is the most important risk factor for the sporadic form of the pathology. The endoplasmic reticulum (ER), the main cellular actor involved in proteostasis, appears significantly compromised in AD due to the accumulation of the β-amyloid (Aβ) protein and the phosphorylated Tau protein. Increasing protein misfolding activates a specific cellular response known as Unfolded Protein Response (UPR), which orchestrates the recovery of ER function. The aim of the present study was to investigate the role of UPR in a murine model of AD induced by intracerebroventricular (i.c.v.) injection of Aβ(1–42) oligomers at 3 or 18 months. The oligomer injection in aged animals induced memory impairment, oxidative stress, and the depletion of glutathione reserve. Furthermore, the RNA sequencing and the bioinformatic analysis performed showed the enrichment of several pathways involved in neurodegeneration and protein regulations. The analysis highlighted the significant dysregulation of the protein kinase RNA-like ER kinase (PERK), inositol-requiring protein 1α (IRE1α) and activating transcription factor 6 (ATF-6). In turn, ER stress affected the PI3K/Akt/Gsk3β and MAPK/ERK pathways, highlighting Mapkapk5 as a potential marker, whose regulation could lead to the definition of new pharmacological and neuroprotective strategies to counteract AD. MDPI 2023-11-11 /pmc/articles/PMC10671834/ /pubmed/38003389 http://dx.doi.org/10.3390/ijms242216200 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sita, Giulia
Graziosi, Agnese
Corrieri, Camilla
Ghelli, Luca
Angelini, Sabrina
Cortelli, Pietro
Hrelia, Patrizia
Morroni, Fabiana
The Unfolded Protein Response in a Murine Model of Alzheimer’s Disease: Looking for Predictors
title The Unfolded Protein Response in a Murine Model of Alzheimer’s Disease: Looking for Predictors
title_full The Unfolded Protein Response in a Murine Model of Alzheimer’s Disease: Looking for Predictors
title_fullStr The Unfolded Protein Response in a Murine Model of Alzheimer’s Disease: Looking for Predictors
title_full_unstemmed The Unfolded Protein Response in a Murine Model of Alzheimer’s Disease: Looking for Predictors
title_short The Unfolded Protein Response in a Murine Model of Alzheimer’s Disease: Looking for Predictors
title_sort unfolded protein response in a murine model of alzheimer’s disease: looking for predictors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10671834/
https://www.ncbi.nlm.nih.gov/pubmed/38003389
http://dx.doi.org/10.3390/ijms242216200
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