Sie befinden Sich nicht im Netzwerk der Universität Paderborn. Der Zugriff auf elektronische Ressourcen ist gegebenenfalls nur via VPN oder Shibboleth (DFN-AAI) möglich. mehr Informationen...
Ergebnis 35 von 34

Details

Autor(en) / Beteiligte
Titel
Pyruvate and uridine rescue the metabolic profile of OXPHOS dysfunction
Ist Teil von
  • Molecular metabolism (Germany), 2022-09, Vol.63, p.101537-101537, Article 101537
Ort / Verlag
Elsevier GmbH
Erscheinungsjahr
2022
Link zum Volltext
Quelle
Electronic Journals Library
Beschreibungen/Notizen
  • Primary mitochondrial diseases (PMD) are a large, heterogeneous group of genetic disorders affecting mitochondrial function, mostly by disrupting the oxidative phosphorylation (OXPHOS) system. Understanding the cellular metabolic re-wiring occurring in PMD is crucial for the development of novel diagnostic tools and treatments, as PMD are often complex to diagnose and most of them currently have no effective therapy. To characterize the cellular metabolic consequences of OXPHOS dysfunction and based on the metabolic signature, to design new diagnostic and therapeutic strategies. In vitro assays were performed in skin-derived fibroblasts obtained from patients with diverse PMD and validated in pharmacological models of OXPHOS dysfunction. Proliferation was assessed using the Incucyte technology. Steady-state glucose and glutamine tracing studies were performed with LC-MS quantification of cellular metabolites. The therapeutic potential of nutritional supplements was evaluated by assessing their effect on proliferation and on the metabolomics profile. Successful therapies were then tested in a in vivo lethal rotenone model in zebrafish. OXPHOS dysfunction has a unique metabolic signature linked to an NAD+/NADH imbalance including depletion of TCA intermediates and aspartate, and increased levels of glycerol-3-phosphate. Supplementation with pyruvate and uridine fully rescues this altered metabolic profile and the subsequent proliferation deficit. Additionally, in zebrafish, the same nutritional treatment increases the survival after rotenone exposure. Our findings reinforce the importance of the NAD+/NADH imbalance following OXPHOS dysfunction in PMD and open the door to new diagnostic and therapeutic tools for PMD. [Display omitted] •OXPHOS deficiency causes a distinct metabolic profile linked to a NAD+/NADH imbalance.•Depleted intracellular aspartic acid is a potential biomarker for OXPHOS dysfunction.•Therapy with pyruvate and uridine corrects the metabolic profile of OXPHOS deficiency.•Pyruvate and uridine treatment increases survival in a lethal rotenone zebrafish model.
Sprache
Englisch
Identifikatoren
ISSN: 2212-8778
eISSN: 2212-8778
DOI: 10.1016/j.molmet.2022.101537
Titel-ID: cdi_doaj_primary_oai_doaj_org_article_7ed8e9ba5937483b8ad271db0b82cab8

Weiterführende Literatur

Empfehlungen zum selben Thema automatisch vorgeschlagen von bX