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Publication : Mitochondrial pyruvate metabolism regulates the activation of quiescent adult neural stem cells.

First Author  Petrelli F Year  2023
Journal  Sci Adv Volume  9
Issue  9 Pages  eadd5220
PubMed ID  36857455 Mgi Jnum  J:352443
Mgi Id  MGI:7441503 Doi  10.1126/sciadv.add5220
Citation  Petrelli F, et al. (2023) Mitochondrial pyruvate metabolism regulates the activation of quiescent adult neural stem cells. Sci Adv 9(9):eadd5220
abstractText  Cellular metabolism is important for adult neural stem/progenitor cell (NSPC) behavior. However, its role in the transition from quiescence to proliferation is not fully understood. We here show that the mitochondrial pyruvate carrier (MPC) plays a crucial and unexpected part in this process. MPC transports pyruvate into mitochondria, linking cytosolic glycolysis to mitochondrial tricarboxylic acid cycle and oxidative phosphorylation. Despite its metabolic key function, the role of MPC in NSPCs has not been addressed. We show that quiescent NSPCs have an active mitochondrial metabolism and express high levels of MPC. Pharmacological MPC inhibition increases aspartate and triggers NSPC activation. Furthermore, genetic Mpc1 ablation in vitro and in vivo also activates NSPCs, which differentiate into mature neurons, leading to overall increased hippocampal neurogenesis in adult and aged mice. These findings highlight the importance of metabolism for NSPC regulation and identify an important pathway through which mitochondrial pyruvate import controls NSPC quiescence and activation.
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