» Articles » PMID: 36155507

Mitochondrial Alterations in Neurons Derived from the Murine AppNL-F Knock-In Model of Alzheimer's Disease

Overview
Publisher Sage Publications
Specialties Geriatrics
Neurology
Date 2022 Sep 26
PMID 36155507
Authors
Affiliations
Soon will be listed here.
Abstract

Background: Alzheimer's disease (AD) research has relied on mouse models overexpressing human mutant A βPP; however, newer generation knock-in models allow for physiological expression of amyloid-β protein precursor (AβPP) containing familial AD mutations where murine AβPP is edited with a humanized amyloid-β (Aβ) sequence. The AppNL-F mouse model has shown substantial similarities to AD brains developing late onset cognitive impairment.

Objective: In this study, we aimed to characterize mature primary cortical neurons derived from homozygous AppNL-F embryos, especially to identify early mitochondrial alterations in this model.

Methods: Primary cultures of AppNL-F neurons kept in culture for 12-15 days were used to measure Aβ levels, secretase activity, mitochondrial functions, mitochondrial-ER contacts, synaptic function, and cell death.

Results: We detected higher levels of Aβ42 released from AppNL-F neurons as compared to wild-type neurons. AppNL-F neurons, also displayed an increased Aβ42/Aβ40 ratio, similar to adult AppNL-F mouse brain. Interestingly, we found an upregulation in mitochondrial oxygen consumption with concomitant downregulation in glycolytic reserve. Furthermore, AppNL-F neurons were more susceptible to cell death triggered by mitochondrial electron transport chain inhibition. Juxtaposition between ER and mitochondria was found to be substantially upregulated, which may account for upregulated mitochondrial-derived ATP production. However, anterograde mitochondrial movement was severely impaired in this model along with loss in synaptic vesicle protein and impairment in pre- and post-synaptic function.

Conclusion: We show that widespread mitochondrial alterations can be detected in AppNL-F neurons in vitro, where amyloid plaque deposition does not occur, suggesting soluble and oligomeric Aβ-species being responsible for these alterations.

Citing Articles

Systems-Level Interactome Mapping Reveals Actionable Protein Network Dysregulation Across the Alzheimer's Disease Spectrum.

Bay S, Rodina A, Haut F, Roychowdhury T, Argyrousi E, Staniszewski A Res Sq. 2025; .

PMID: 39989971 PMC: 11844643. DOI: 10.21203/rs.3.rs-5930673/v1.


Mitochondrial hypermetabolism precedes impaired autophagy and synaptic disorganization in App knock-in Alzheimer mouse models.

Naia L, Shimozawa M, Bereczki E, Li X, Liu J, Jiang R Mol Psychiatry. 2023; 28(9):3966-3981.

PMID: 37907591 PMC: 10730401. DOI: 10.1038/s41380-023-02289-4.

References
1.
Hark T, Rao N, Castillon C, Basta T, Smukowski S, Bao H . Pulse-Chase Proteomics of the App Knockin Mouse Models of Alzheimer's Disease Reveals that Synaptic Dysfunction Originates in Presynaptic Terminals. Cell Syst. 2020; 12(2):141-158.e9. PMC: 7897324. DOI: 10.1016/j.cels.2020.11.007. View

2.
Rhein V, Song X, Wiesner A, Ittner L, Baysang G, Meier F . Amyloid-beta and tau synergistically impair the oxidative phosphorylation system in triple transgenic Alzheimer's disease mice. Proc Natl Acad Sci U S A. 2009; 106(47):20057-62. PMC: 2774257. DOI: 10.1073/pnas.0905529106. View

3.
Citron M, Oltersdorf T, Haass C, McConlogue L, Hung A, Seubert P . Mutation of the beta-amyloid precursor protein in familial Alzheimer's disease increases beta-protein production. Nature. 1992; 360(6405):672-4. DOI: 10.1038/360672a0. View

4.
Rizzuto R, Pinton P, Carrington W, Fay F, Fogarty K, Lifshitz L . Close contacts with the endoplasmic reticulum as determinants of mitochondrial Ca2+ responses. Science. 1998; 280(5370):1763-6. DOI: 10.1126/science.280.5370.1763. View

5.
Area-Gomez E, Del Carmen Lara Castillo M, Tambini M, Guardia-Laguarta C, de Groof A, Madra M . Upregulated function of mitochondria-associated ER membranes in Alzheimer disease. EMBO J. 2012; 31(21):4106-23. PMC: 3492725. DOI: 10.1038/emboj.2012.202. View