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Proteomic analysis links alterations of bioenergetics, mitochondria-ER interactions and proteostasis in hippocampal astrocytes from 3xTg-AD mice

Giulia Dematteis, Gabrielė Vydmantaitė, Federico Alessandro Ruffinatti, Malak Chahin, Serena Farruggio, Elettra Barberis, Eleonora Ferrari, Emílio Marengo, Carla Distasi, Ramunė Morkūnienė, Armando A. Genazzani, Mariagrazia Grilli, Elena Grossini, Marco Corazzari, Marcello Manfredi

Cell Death and Disease · 2020 · ▲ 79 citations

Abstract

Abstract The pathogenesis of Alzheimer’s disease (AD), a slowly-developing age-related neurodegenerative disorder, is a result of the action of multiple factors including deregulation of Ca 2+ homeostasis, mitochondrial dysfunction(definition), and dysproteostasis. Interaction of these factors in astrocytes, principal homeostatic cells in the central nervous system, is still poorly understood. Here we report that in immortalized hippocampal astrocytes from 3xTg-AD mice (3Tg-iAstro cells) bioenergetics is impaired, including reduced glycolysis and mitochondrial oxygen consumption, and increased production of reactive oxygen species. Shotgun proteomics analysis of mitochondria-ER-enriched fraction showed no alterations in the expression of mitochondrial and OxPhos proteins, while those related to the ER functions and protein synthesis were deregulated. Using ER- and mitochondria-targeted aequorin-based Ca 2+ probe we show that, in 3Tg-iAstro cells, ER was overloaded with Ca 2+ while Ca 2+ uptake by mitochondria upon ATP stimulation was reduced. This was accompanied by the increase in short distance (≈8–10 nm) contact area between mitochondria and ER, upregulation of ER-stress/unfolded protein response genes Atf4, Atf6 and Herp, and reduction of global protein synthesis rate. We suggest that familial AD mutations in 3Tg-iAstro cells induce mitochondria-ER interaction changes that deregulate astrocytic bioenergetics, Ca 2+ homeostasis and proteostasis(definition). These factors may interact, creating a pathogenic loop compromising homeostatic and defensive functions of astroglial cells predisposing neurons to dysfunction.

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OpenAlex
DOI
10.1038/s41419-020-02911-1
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2026-06-01 MST

Cite this

APA
Dematteis, G., Vydmantaitė, G., Ruffinatti, F.A., Chahin, M., Farruggio, S., Barberis, E., Ferrari, E., Marengo, E., Distasi, C., Morkūnienė, R., Genazzani, A.A., Grilli, M., Grossini, E., Corazzari, M., Manfredi, M., Lim, D., Jekabsone, A., &amp; Tapella, L. (2020). Proteomic analysis links alterations of bioenergetics, mitochondria-ER interactions and proteostasis in hippocampal astrocytes from 3xTg-AD mice. <em>Cell Death and Disease</em>. https://doi.org/10.1038/s41419-020-02911-1
Vancouver
Dematteis G, Vydmantaitė G, Ruffinatti FA, Chahin M, Farruggio S, Barberis E, et al. Proteomic analysis links alterations of bioenergetics, mitochondria-ER interactions and proteostasis in hippocampal astrocytes from 3xTg-AD mice. Cell Death and Disease. 2020. doi:10.1038/s41419-020-02911-1.
BibTeX
@article{giulia2020Proteo, title = {Proteomic analysis links alterations of bioenergetics, mitochondria-ER interactions and proteostasis in hippocampal astrocytes from 3xTg-AD mice}, author = {Giulia Dematteis and Gabrielė Vydmantaitė and Federico Alessandro Ruffinatti and Malak Chahin and Serena Farruggio and Elettra Barberis and Eleonora Ferrari and Emílio Marengo and Carla Distasi and Ramunė Morkūnienė and Armando A. Genazzani and Mariagrazia Grilli and Elena Grossini and Marco Corazzari and Marcello Manfredi and Dmitry Lim and Aistė Jekabsone and Laura Tapella}, journal = {Cell Death and Disease}, year = {2020}, doi = {10.1038/s41419-020-02911-1}, }

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