4.5 Article

CPNE1 Enhances Colorectal Cancer Cell Growth, Glycolysis, and Drug Resistance Through Regulating the AKT-GLUT1/HK2 Pathway

Journal

ONCOTARGETS AND THERAPY
Volume 14, Issue -, Pages 699-710

Publisher

DOVE MEDICAL PRESS LTD
DOI: 10.2147/OTT.S284211

Keywords

copines-1; colorectal cancer; aerobic glycolysis; mitochondrial respiration

Funding

  1. Medical Science and Technology Project of Xuhui District [SHXH201704]
  2. Shanghai municipal commission of health and family planning [201740229]

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CPNE1 is overexpressed in CRC tissues and promotes cell proliferation, inhibits apoptosis, increases mitochondrial respiration and aerobic glycolysis by activating the AKT signaling pathway. It also contributes to chemoresistance in CRC cells, making it a potential target for CRC treatment.
Introduction: Colorectal cancer (CRC) is a major cause of cancer-related mortality worldwide. Copines-1 (CPNE1) has been shown to be overexpressed in various cancers; however, the role of CPNE1 in CRC remains unknown. Therefore, it is of great importance to elucidate the role of CPNE1 in CRC and its underlying mechanism of action. Methods: CPNE1 expression in CRC tissues was measured by quantitative real-time PCR and immunohistochemical (IHC) staining. CPNE1 was knocked down (KD) or overexpressed using small inferring RNAs or lentiviral transduction in CRC cells. The proliferation, apoptosis, glycolysis, and mitochondrial respiration of CRC cells were assessed by cell counting kit-8, flow cytometry, and Xfe24 extracellular flux analyzer assays, respectively. The role of CPNE1 in tumor growth and chemoresistance was further confirmed in xenograft and patient-derived tumor xenograft models, respectively. Results: CPNE1 mRNA and protein were upregulated in CRC tissues. CPNE1 promoted proliferation, inhibited apoptosis, increased mitochondrial respiration, enhanced aerobic glycolysis by activating AKT signaling, upregulated glucose transporter 1 (GLUT1) and hexokinase 2 (HK2), and downregulated the production of cleaved Caspase-3 (c-Caspase 3). CPNE1 also contributed to chemoresistance in CRC cells. CPNE1 KD inhibited tumor growth and increased the sensitivity of tumors to oxaliplatin in vivo. Conclusion: CPNE1 promotes CRC progression by activating the AKT-GLUT1/HK2 cascade and enhances chemoresistance.

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