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Published on: April 28, 2021
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.
Abstract:
DHX9 is a multifunctional DExH-box RNA helicase with important roles in the regulation of transcription, translation, and maintenance of genome stability. Elevated expression of DHX9 is evident in multiple cancer types, including colorectal cancer. Microsatellite instable-high (MSI-H) tumors with deficient mismatch repair (dMMR) display a strong dependence on DHX9, making this helicase an attractive target for oncology drug discovery. In this report, we show that DHX9 knockdown increased RNA/DNA secondary structures and replication stress, resulting in cell-cycle arrest and the onset of apoptosis in cancer cells with MSI-H/dMMR. ATX968 was identified as a potent and selective inhibitor of DHX9 helicase activity. Chemical inhibition of DHX9 enzymatic activity elicited similar selective effects on cell proliferation as seen with genetic knockdown. In addition, ATX968 induced robust and durable responses in an MSI-H/dMMR xenograft model but not in a microsatellite stable/proficient MMR model. These preclinical data validate DHX9 as a target for the treatment of patients with MSI-H/dMMR. Additionally, this potent and selective inhibitor of DHX9 provides a valuable tool with which to further explore the effects of inhibition of DHX9 enzymatic activity on the proliferation of cancer cells in vitro and in vivo. Significance: DHX9 is required in cancer cells with deficient mismatch repair and can be inhibited by ATX968, providing a promising strategy for the development of precision cancer therapeutics.
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.
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