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Lactate-carried Mitochondrial Energy Overflow.

Daniela Rauseo,Yasna Contreras-Baeza, Hugo Faurand, Nataly Cárcamo, Raibel Suárez, Alexandra von Faber-Castell, Franco Silva, Valentina Mora-González,Matthias T Wyss,Felipe Baeza-Lehnert,Iván Ruminot, Carlos Alvarez-Navarro,Alejandro San Martín, Bruno Weber,Pamela Y Sandoval, L Felipe Barros

bioRxiv : the preprint server for biology(2024)

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Abstract
We addressed the question of mitochondrial lactate metabolism using genetically-encoded sensors. The organelle was found to contain a dynamic lactate pool that leads to dose- and time-dependent protein lactylation. In neurons, mitochondrial lactate reported blood lactate levels with high fidelity. The exchange of lactate across the inner mitochondrial membrane was found to be mediated by a high affinity H+-coupled transport system involving the mitochondrial pyruvate carrier MPC. Assessment of electron transport chain activity and determination of lactate flux showed that mitochondria are tonic lactate producers, a phenomenon driven by energization and stimulated by hypoxia. We conclude that an overflow mechanism caps the redox level of mitochondria, while saving energy in the form of lactate.
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