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Tankyrase Inhibitors Target Colorectal Cancer Stem Cells via AXIN-Dependent Downregulation of c-KIT Tyrosine Kinase

Myung-Kyu Jang, Tetsuo Mashima, Hiroyuki Seimiya

2020Molecular Cancer Therapeutics26 citationsDOI

Abstract

Abstract Cancer stem cells (CSC) constitute heterogeneous cell subpopulations of a tumor. Although targeting CSCs is important for cancer eradication, no clinically approved drugs that target CSCs have been established. Tankyrase poly(ADP-ribosyl)ates and destabilizes AXIN, a negative regulator of β-catenin, and promotes β-catenin signaling. Here, we report that tankyrase inhibitors downregulate c-KIT tyrosine kinase and inhibit the growth of CD44-positive colorectal CSCs. c-KIT expression in CD44-positive subpopulations of colorectal cancer COLO-320DM cells is associated with their tumor-initiating potential in vivo. Tankyrase inhibitors downregulate c-KIT expression in established cell lines, such as COLO-320DM and DLD-1, and colorectal cancer patient–derived cells. These effects of tankyrase inhibitors are caused by reducing the recruitment of SP1 transcription factor to the c-KIT gene promoter and depend on AXIN2 stabilization but not β-catenin downregulation. Whereas c-KIT knockdown inhibits the growth of CD44-positive COLO-320DM cells, c-KIT overexpression in DLD-1 cells confers resistance to tankyrase inhibitors. Combination of a low-dose tankyrase inhibitor and irinotecan significantly inhibited the growth of COLO-320DM tumors in a mouse xenograft model. These observations suggest that tankyrase inhibitors target c-KIT–positive colorectal CSCs and provide a novel therapeutic strategy for cancer.

Topics & Concepts

Downregulation and upregulationColorectal cancerTyrosine kinaseCancer researchStem cellBiologyKinaseChemistryCancerMolecular biologyCell biologyBiochemistrySignal transductionGeneticsGeneWnt/β-catenin signaling in development and cancerPI3K/AKT/mTOR signaling in cancerHippo pathway signaling and YAP/TAZ
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