Oncogene

PLK1-driven PDHA1 modification changes metabolism in lung cancer

Updated

Abstract

PLK1 phosphorylation of PDHA1 at threonine 57 drives metabolic reprogramming from oxidative phosphorylation to glycolysis.

  • Metabolic reprogramming involves a shift from oxidative phosphorylation to glycolysis due to PLK1 activity.
  • Cells with PDHA1-T57 phosphorylation depend more on the aspartate-malate shuttle rather than glucose-derived pyruvate.
  • This metabolic shift was confirmed in mouse embryonic fibroblasts and transgenic mice expressing the PDHA1-T57D variant.
  • Dichloroacetic acid, a PDK inhibitor, when combined with Onvansertib, a PLK1 inhibitor, shows potential to synergistically inhibit lung tumor growth.
  • The treatment with DCA and Onvansertib enhances mitochondrial reactive oxygen species, inhibits glycolysis, and induces apoptosis in lung cancer cells.

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Full Text

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Funding

Competing interests

Competing interests: The authors declare no competing interests. Ethics approval and consent to participate: All methods in this study were performed in accordance with the relevant guidelines and regulations. Animal studies were approved by the University of Kentucky Institutional Animal Care and Use Committee (IACUC, Protocol No. 2020-3681). Tissue microarray (TMA) slides containing 216 NSCLC patient samples from a clinical cohort were obtained through the University of Kentucky Markey Cancer Center. Human tumor tissues used in this study were not collected specifically for research purposes, and carried no identifiable personal information. Approval for the use of these human tissue samples was granted by the University of Kentucky Institutional Review Board (IRB) under Dr. Derek Allison.
PubMed

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