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PKM2 diverts glycolytic flux in dependence on mitochondrial one-carbon cycle

Authors :
Benzarti, Mohaned
Neises, Laura
Oudin, Anais
Krötz, Christina
Viry, Elodie
Gargiulo, Ernesto
Pulido, Coralie
Schmoetten, Maryse
Pozdeev, Vitaly
Lorenz, Nadia I.
Ronellenfitsch, Michael W.
Sumpton, David
Warmoes, Marc
Jaeger, Christian
Lesur, Antoine
Becker, Björn
Moussay, Etienne
Paggetti, Jerome
Niclou, Simone P.
Letellier, Elisabeth
Meiser, Johannes
Source :
Cell Reports; March 2024, Vol. 43 Issue: 3
Publication Year :
2024

Abstract

Modeling tumor metabolism in vitroremains challenging. Here, we used galactose as an in vitrotool compound to mimic glycolytic limitation. In contrast to the established idea that high glycolytic flux reduces pyruvate kinase isozyme M2 (PKM2) activity to support anabolic processes, we have discovered that glycolytic limitation also affects PKM2 activity. Surprisingly, despite limited carbon availability and energetic stress, cells induce a near-complete block of PKM2 to divert carbons toward serine metabolism. Simultaneously, TCA cycle flux is sustained, and oxygen consumption is increased, supported by glutamine. Glutamine not only supports TCA cycle flux but also serine synthesis via distinct mechanisms that are directed through PKM2 inhibition. Finally, deleting mitochondrial one-carbon (1C) cycle reversed the PKM2 block, suggesting a potential formate-dependent crosstalk that coordinates mitochondrial 1C flux and cytosolic glycolysis to support cell survival and proliferation during nutrient-scarce conditions.

Details

Language :
English
ISSN :
22111247
Volume :
43
Issue :
3
Database :
Supplemental Index
Journal :
Cell Reports
Publication Type :
Periodical
Accession number :
ejs65514648
Full Text :
https://doi.org/10.1016/j.celrep.2024.113868