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Verfasst von:Hertle, Anna M. [VerfasserIn]   i
 Yan, Jing [VerfasserIn]   i
 Bas Orth, Carlos [VerfasserIn]   i
 Tan, Yan-Wei [VerfasserIn]   i
 Sekler, Israel [VerfasserIn]   i
 Bading, Hilmar [VerfasserIn]   i
Titel:Disrupted expression of mitochondrial NCLX sensitizes neuroglial networks to excitotoxic stimuli and renders synaptic activity toxic
Verf.angabe:Anna M. Hagenston, Jing Yan, Carlos Bas-Orth, Yanwei Tan, Israel Sekler, and Hilmar Bading
Jahr:2022
Umfang:24 S.
Fussnoten:Published, papers in press, December 20, 2021 ; Gesehen am 06.04.2022
Titel Quelle:Enthalten in: The journal of biological chemistry
Ort Quelle:Bethesda, Md. : ASBMB Publications, 1905
Jahr Quelle:2022
Band/Heft Quelle:298(2022), 2, Artikel-ID 101508, Seite 1-24
ISSN Quelle:1083-351X
Abstract:The mitochondrial solute carrier family 8 sodium/calcium/lithium exchanger, member B1 (NCLX) is an important mediator of calcium extrusion from mitochondria. In this study, we tested the hypothesis that physiological expression levels of NCLX are essential for maintaining neuronal resilience in the face of excitotoxic challenge. Using an shRNA-mediated approach, we showed that reduced NCLX expression exacerbates neuronal mitochondrial calcium dysregulation, mitochondrial membrane potential (ΔΨm) breakdown, and reactive oxygen species generation during excitotoxic stimulation of primary hippocampal cultures. Moreover, NCLX knockdown—which affected both neurons and glia—resulted not only in enhanced neurodegeneration following an excitotoxic insult but also in neuronal and astrocytic cell death under basal conditions. Our data also revealed that synaptic activity, which promotes neuroprotective signaling, can become lethal upon NCLX depletion; expression of NCLX-targeted shRNA impaired the clearance of mitochondrial calcium following action potential bursts, and was associated both with ΔΨm breakdown and substantial neurodegeneration in hippocampal cultures undergoing synaptic activity. Finally, we showed that NCLX knockdown within the hippocampal cornu ammonis 1 region in vivo causes substantial neurodegeneration and astrodegeneration. In summary, we demonstrated that dysregulated NCLX expression not only sensitizes neuroglial networks to excitotoxic stimuli but also notably renders otherwise neuroprotective synaptic activity toxic. These findings may explain the emergence of neurodegeneration and astrodegeneration in patients with disorders characterized by disrupted NCLX expression or function, and suggest that treatments aimed at enhancing or restoring NCLX function may prevent central nervous system damage in these disease states.
DOI:doi:10.1016/j.jbc.2021.101508
URL:Bitte beachten Sie: Dies ist ein Bibliographieeintrag. Ein Volltextzugriff für Mitglieder der Universität besteht hier nur, falls für die entsprechende Zeitschrift/den entsprechenden Sammelband ein Abonnement besteht oder es sich um einen OpenAccess-Titel handelt.

Volltext: https://doi.org/10.1016/j.jbc.2021.101508
 Volltext: https://www.sciencedirect.com/science/article/pii/S0021925821013181
 DOI: https://doi.org/10.1016/j.jbc.2021.101508
Datenträger:Online-Ressource
Sprache:eng
Sach-SW:calcium signaling
 gene expression
 mitochondria
 NCLX
 neurotoxicity
 synaptic activity
K10plus-PPN:1797311875
Verknüpfungen:→ Zeitschrift

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