A Potent, Selective, Small-Molecule Inhibitor of DHX9 Abrogates Proliferation of Microsatellite Instable Cancers with

Jennifer Castro1, Matthew H Daniels1, David Brennan1

  • 1Accent Therapeutics, Lexington, Massachusetts.

Cancer Research
|November 26, 2024
PubMed

Insights

DHX9 RNA helicase is crucial for microsatellite instable-high (MSI-H) cancers. Inhibiting DHX9 with ATX968 selectively targets these cancer cells, offering a promising precision therapy approach.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • DHX9 (DExH-box RNA helicase) is upregulated in various cancers, including colorectal cancer.
  • Microsatellite instable-high (MSI-H) tumors with deficient mismatch repair (dMMR) exhibit a dependency on DHX9.
  • DHX9 plays critical roles in gene transcription, translation, and genome stability.

Purpose of the Study:

  • To investigate the role of DHX9 in MSI-H/dMMR cancer cells.
  • To evaluate the efficacy of DHX9 inhibition as a therapeutic strategy for MSI-H/dMMR cancers.
  • To characterize ATX968 as a selective DHX9 inhibitor.

Main Methods:

  • DHX9 knockdown in cancer cells to assess effects on RNA/DNA structures and replication stress.
  • Treatment with ATX968, a potent and selective DHX9 inhibitor.
  • Evaluation of ATX968 efficacy in MSI-H/dMMR and microsatellite stable/proficient MMR xenograft models.

Main Results:

  • DHX9 knockdown induced cell-cycle arrest and apoptosis in MSI-H/dMMR cancer cells.
  • ATX968 demonstrated selective inhibition of DHX9 enzymatic activity and cancer cell proliferation.
  • ATX968 treatment resulted in significant responses in MSI-H/dMMR xenografts but not in microsatellite stable/proficient MMR models.

Conclusions:

  • DHX9 is essential for the survival of MSI-H/dMMR cancer cells.
  • ATX968 is a promising therapeutic agent for targeting DHX9 in MSI-H/dMMR cancers.
  • DHX9 inhibition represents a viable precision medicine strategy for specific cancer patient populations.