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February 25, 2026Cells0 citationsOpen Access

WBP2 Attenuates Metformin Response in HER2-Positive Breast Cancer Cells by Repressing AMPK Activation and Inducing a Lower AMP:ATP Ratio State Through Enhanced ATP Production

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HLHexian LinSKS. Deborah KangFXFei Xie

Key Points

  • This research aims to understand how WBP2 affects the response of HER2-positive breast cancer to metformin, focusing on AMPK activation.
  • Conducted in vitro and mouse model experiments to assess metformin response.
  • Employed immunohistochemistry (IHC) to analyze WBP2 and p-AMPK co-expression in clinical specimens.
  • Performed RNA-seq analyses to explore WBP2’s role in energy metabolism.
  • WBP2 inhibited the metformin response in HER2+ breast cancer cells both in vitro and in vivo.
  • This inhibition correlated with reduced AMPK activation and a lower AMP:ATP ratio.
  • Enhanced ATP production and glycolytic capacity were observed in WBP2-expressing cells.

Abstract

Metformin is an antidiabetic drug that has been tested widely as an anti-cancer agent. However, data from clinical trials have been mixed. Evidence for metformin’s efficacy in HER2+ breast cancer exists. Hence, we evaluated whether WBP2, a HER2-coamplified gene, can regulate the response of HER2+ breast cancer to metformin. Identification of biomarkers for predicting metformin response has implications in repurposing metformin for precision oncology. The effect of WBP2 on breast cancer response to metformin was studied using in vitro and mouse models. The mechanism of WBP2 on metformin-induced AMPK activation was elucidated, and its co-expression with p-AMPK was examined in clinical specimens using IHC. RNA-seq analyses were performed to elucidate WBP2’s mechanism in energy metabolism. WBP2 inhibited the metformin response of HER2+ breast cancer in vitro and in vivo. These effects were concomitant with WBP2-mediated repression of metformin-induced AMPK activation and mTOR inhibition in HER2+ breast cancer cells, a lower AMP:ATP ratio state, and enhanced glycolytic capacity and mitochondria respiration. Analysis of HER2-positive breast cancer samples supports the negative correlation between WBP2 expression and activated AMPK observed in vitro. RNA-seq analysis revealed the potential mechanism of WBP2 in regulating ATP production processes and preferential effect of WBP2 on metformin response in HER2+ breast cancer. This study reported a novel role of WBP2 in cancer metabolism and energetics that contributes new insights into the molecular etiology of cancer. WBP2 may be a biomarker for patient stratification, paving the way towards repurposing metformin for precision oncology.

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Cite This Study

Lin et al. (2026) studied this question.

synapsesocial.com/papers/699e9152f5123be5ed04ec95https://doi.org/10.3390/cells15040381
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