Title : Phosphoenolpyruvate from Glycolysis and PEPCK Regulate Cancer Cell Fate by Altering Cytosolic Ca2.

Pub. Date : 2019 Dec 19

PMID : 31861674






2 Functional Relationships(s)
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Protein Name
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1 Changes in phosphoenolpyruvate (PEP) concentrations secondary to variations in glucose availability can regulate calcium signaling in T cells as this metabolite potently inhibits the sarcoplasmic reticulum Ca2+/ATPase pump (SERCA). Glucose carbonic anhydrase 2 Homo sapiens
2 Collectively, these results suggest that glucose and PEPCK can regulate NFAT and c-Myc activities through their influence on the PEP/Ca2+ axis, advancing a role for PEP as a second messenger communicating metabolism, calcium cell signaling, and tumor biology. Glucose carbonic anhydrase 2 Homo sapiens