AI Article Synopsis

  • Increased glycolysis and glucose dependence are key features of cancer, particularly in HER2-positive tumors, where they contribute to resistance against the cancer drug trastuzumab.
  • The study examined how t-Darpp and IGF-1 receptor (IGF-1R) play roles in enhancing glycolytic activity and impacting patient survival in breast cancer.
  • Results showed that t-Darpp promotes glucose metabolism and trastuzumab resistance by activating IGF-1R signaling through its interaction with EGFR and HER2 receptors, emphasizing the link between t-Darpp overexpression and cancer cell metabolism.

Article Abstract

Increased glycolysis and glucose dependence is a hallmark of malignancy that enables tumors to maximize cell proliferation. In HER2 cancers, an increase in glycolytic capacity is associated with trastuzumab resistance. IGF-1R activation and t-Darpp overexpression both confer trastuzumab resistance in breast cancer. We therefore investigated a role for IGF-1R and t-Darpp in regulating glycolytic capacity in HER2 breast cancers. We examined the relationship between t-Darpp and IGF-1R expression in breast tumors and their respective relationships with patient survival. To assess t-Darpp's metabolic effects, we used the Seahorse flux analyzer to measure glucose metabolism in trastuzumab-resistant SK-BR-3 cells (SK.Her) that have high endogenous t-Darpp levels and SK.tDrp cells that stably overexpress exogenous t-Darpp. To investigate t-Darpp's mechanism of action, we evaluated t-Darpp:IGF-1R complexes by coimmunoprecipitation and proximity ligation assays. We used pathway-specific inhibitors to study the dependence of t-Darpp effects on IGF-1R signaling. We used siRNA knockdown to determine whether glucose reliance in SK.Her cells was mediated by t-Darpp. In breast tumors, PPP1R1B mRNA levels were inversely correlated with IGF-1R mRNA levels and directly associated with shorter overall survival. t-Darpp overexpression was sufficient to increase glucose metabolism in SK.tDrp cells and essential for the glycolytic phenotype of SK.Her cells. Recombinant t-Darpp stimulated glucose uptake, glycolysis, and IGF-1R-Akt signaling in SK-BR-3 cells. Finally, t-Darpp stimulated IGF-1R heterodimerization with ErbB receptors and required IGF-1R signaling to confer its metabolic effects. t-Darpp activates IGF-1R signaling through heterodimerization with EGFR and HER2 to stimulate glycolysis and confer trastuzumab resistance. .

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7007690PMC
http://dx.doi.org/10.1158/1078-0432.CCR-17-0824DOI Listing

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