WX20120108, a novel IAP antagonist, induces tumor cell autophagy via activating ROS-FOXO pathway

Rui Ding1,2, Xin Wang1, Wei Chen1

  • 1Beijing Institute of Pharmacology and Toxicology, State Key Laboratory of Toxicology and Medical Countermeasures, Beijing, 100850, China.

Insights

The novel IAP antagonist WX20120108 effectively inhibits tumor cell proliferation and induces autophagy. This autophagy is regulated by a reactive oxygen species (ROS)-Foxo3 pathway, independent of inhibitor of apoptosis proteins (IAPs).

Area of Science:

  • Molecular Biology
  • Cancer Research
  • Cellular Signaling

Background:

  • Inhibitor of apoptosis proteins (IAPs) and their antagonists are known to regulate autophagy, but the precise mechanisms are not fully understood.
  • WX20120108, an analogue of the IAP antagonist GDC-0152, exhibits enhanced anti-tumor and autophagy-regulating activities in cancer cells.

Purpose of the Study:

  • To elucidate the molecular mechanisms by which WX20120108 induces autophagy.
  • To investigate the role of reactive oxygen species (ROS) and Foxo3 in WX20120108-mediated autophagy.

Main Methods:

  • Molecular docking and fluorescence polarization anisotropy (FPA) competitive assays were used to determine WX20120108 binding affinities to IAP domains.
  • Cell proliferation assays, apoptosis assays (caspase-dependent and TNFα-dependent), and autophagy induction studies were performed in various cancer cell lines.
  • Gene silencing (Foxo3, cIAP1/2, XIAP) and treatment with catalase were employed to dissect the signaling pathway.

Main Results:

  • WX20120108 demonstrated high affinity binding to XIAP-BIR3, XIAP BIR2-BIR3, cIAP1 BIR3, and cIAP2 BIR3 domains, acting as an IAP antagonist.
  • WX20120108 potently inhibited cancer cell proliferation and induced both apoptosis and autophagy in a dose- and time-dependent manner.
  • WX20120108 selectively activated Foxo3, leading to nuclear translocation and upregulation of autophagy-related genes (Bnip3, Pik3c3, Atg5, Atg4b).
  • Autophagy induction by WX20120108 was dependent on Foxo3 activation and ROS generation, but independent of IAP proteins.

Conclusions:

  • WX20120108-induced autophagy is mediated through the activation of a ROS-Foxo3 signaling pathway.
  • This pathway is independent of direct interaction with inhibitor of apoptosis proteins (IAPs).
  • The findings offer novel insights into the non-canonical mechanisms of IAP antagonist-driven autophagy regulation.

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