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Mitochondrial pyruvate transport regulates presynaptic metabolism and neurotransmission. | LitMetric

AI Article Synopsis

  • Glucose has been thought of as the main energy source for the brain, but its levels can change during sleep and brain activity, which can cause stress for brain cells.
  • New research shows that the brain can also use pyruvate as an alternative fuel, which helps maintain neuron health even when glucose is low.
  • The study highlights that the way pyruvate is taken up by mitochondria affects essential processes in nerve communication, impacting how signals are sent and received in the brain.

Article Abstract

Glucose has long been considered the primary fuel source for the brain. However, glucose levels fluctuate in the brain during sleep or circuit activity, posing major metabolic stress. Here, we demonstrate that the mammalian brain uses pyruvate as a fuel source, and pyruvate can support neuronal viability in the absence of glucose. Nerve terminals are sites of metabolic vulnerability, and we show that mitochondrial pyruvate uptake is a critical step in oxidative ATP production in hippocampal terminals. We find that the mitochondrial pyruvate carrier is post-translationally modified by lysine acetylation, which, in turn, modulates mitochondrial pyruvate uptake. Our data reveal that the mitochondrial pyruvate carrier regulates distinct steps in neurotransmission, namely, the spatiotemporal pattern of synaptic vesicle release and the efficiency of vesicle retrieval-functions that have profound implications for synaptic plasticity. In summary, we identify pyruvate as a potent neuronal fuel and mitochondrial pyruvate uptake as a critical node for the metabolic control of neurotransmission in hippocampal terminals.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11567002PMC
http://dx.doi.org/10.1126/sciadv.adp7423DOI Listing

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