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Neurobiol Dis ; 169: 105737, 2022 07.
Article de Anglais | MEDLINE | ID: mdl-35452786

RÉSUMÉ

Altered mitochondrial DNA (mtDNA) occurs in neurodegenerative disorders like Alzheimer's disease (AD); how mtDNA synthesis is linked to neurodegeneration is poorly understood. We previously discovered Nutrient-induced Mitochondrial Activity (NiMA), an inter-organelle signaling pathway where nutrient-stimulated lysosomal mTORC1 activity regulates mtDNA replication in neurons by a mechanism sensitive to amyloid-ß oligomers (AßOs), a primary factor in AD pathogenesis (Norambuena et al., 2018). Using 5-ethynyl-2'-deoxyuridine (EdU) incorporation into mtDNA of cultured neurons, along with photoacoustic and mitochondrial metabolic imaging of cultured neurons and mouse brains, we show these effects being mediated by mTORC1-catalyzed T40 phosphorylation of superoxide dismutase 1 (SOD1). Mechanistically, tau, another key factor in AD pathogenesis and other tauopathies, reduced the lysosomal content of the tuberous sclerosis complex (TSC), thereby increasing NiMA and suppressing SOD1 activity and mtDNA synthesis. AßOs inhibited these actions. Dysregulation of mtDNA synthesis was observed in fibroblasts derived from tuberous sclerosis (TS) patients, who lack functional TSC and elevated SOD1 activity was also observed in human AD brain. Together, these findings imply that tau and SOD1 couple nutrient availability to mtDNA replication, linking mitochondrial dysfunction to AD.


Sujet(s)
Maladie d'Alzheimer , Peptides bêta-amyloïdes , Superoxide dismutase-1 , Complexe de la sclérose tubéreuse , Maladie d'Alzheimer/enzymologie , Maladie d'Alzheimer/génétique , Maladie d'Alzheimer/métabolisme , Maladie d'Alzheimer/anatomopathologie , Peptides bêta-amyloïdes/génétique , Peptides bêta-amyloïdes/métabolisme , Animaux , ADN mitochondrial/génétique , ADN mitochondrial/métabolisme , Humains , Lysosomes/génétique , Lysosomes/métabolisme , Complexe-1 cible mécanistique de la rapamycine/métabolisme , Souris , Mitochondries/métabolisme , Superoxide dismutase-1/génétique , Superoxide dismutase-1/métabolisme , Complexe de la sclérose tubéreuse/enzymologie , Complexe de la sclérose tubéreuse/génétique
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