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MDM2 and MDM4 Are Therapeutic Vulnerabilities in Malignant Rhabdoid Tumors
Thomas P Howard1,2,3,4, Taylor E Arnoff1,2, Melinda R Song1,2
1Department of Pediatric Oncology, Dana-Farber Cancer Institute and Division of Hematology/Oncology, Boston Children's Hospital, Boston, Massachusetts.
Abstract:
Malignant rhabdoid tumors (MRT) are highly aggressive pediatric cancers that respond poorly to current therapies. In this study, we screened several MRT cell lines with large-scale RNAi, CRISPR-Cas9, and small-molecule libraries to identify potential drug targets specific for these cancers. We discovered MDM2 and MDM4, the canonical negative regulators of p53, as significant vulnerabilities. Using two compounds currently in clinical development, idasanutlin (MDM2-specific) and ATSP-7041 (MDM2/4-dual), we show that MRT cells were more sensitive than other p53 wild-type cancer cell lines to inhibition of MDM2 alone as well as dual inhibition of MDM2/4. These compounds caused significant upregulation of the p53 pathway in MRT cells, and sensitivity was ablated by CRISPR-Cas9-mediated inactivation of TP53. We show that loss of SMARCB1, a subunit of the SWI/SNF (BAF) complex mutated in nearly all MRTs, sensitized cells to MDM2 and MDM2/4 inhibition by enhancing p53-mediated apoptosis. Both MDM2 and MDM2/4 inhibition slowed MRT xenograft growth in vivo, with a 5-day idasanutlin pulse causing marked regression of all xenografts, including durable complete responses in 50% of mice. Together, these studies identify a genetic connection between mutations in the SWI/SNF chromatin-remodeling complex and the tumor suppressor gene TP53 and provide preclinical evidence to support the targeting of MDM2 and MDM4 in this often-fatal pediatric cancer. SIGNIFICANCE: This study identifies two targets, MDM2 and MDM4, as vulnerabilities in a deadly pediatric cancer and provides preclinical evidence that compounds inhibiting these proteins have therapeutic potential.
Insights
Malignant rhabdoid tumors (MRT) are aggressive pediatric cancers. Targeting MDM2 and MDM4 proteins shows therapeutic potential by inhibiting tumor growth and inducing regression in preclinical models.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Malignant rhabdoid tumors (MRT) are aggressive pediatric cancers with poor therapeutic outcomes.
- Identifying cancer-specific vulnerabilities is crucial for developing effective treatments.
Purpose of the Study:
- To identify drug targets specific to malignant rhabdoid tumors (MRT).
- To evaluate the therapeutic potential of targeting MDM2 and MDM4 in MRT.
Main Methods:
- Large-scale RNAi, CRISPR-Cas9, and small-molecule screening of MRT cell lines.
- Treatment with MDM2-specific (idasanutlin) and MDM2/4-dual (ATSP-7041) inhibitors.
- Assessment of p53 pathway activation, TP53 inactivation, and SMARCB1 mutation effects.
- Evaluation of xenograft growth inhibition and regression in vivo.
Main Results:
- MDM2 and MDM4 were identified as significant vulnerabilities in MRT cells.
- MRT cells showed increased sensitivity to MDM2 and MDM2/4 inhibition compared to other p53 wild-type cell lines.
- Inhibition of MDM2/4 upregulated the p53 pathway, leading to apoptosis, which was dependent on TP53.
- Loss of SMARCB1 sensitized cells to MDM2/4 inhibition.
- In vivo studies demonstrated slowed xenograft growth and significant tumor regression with idasanutlin treatment.
Conclusions:
- Targeting MDM2 and MDM4 represents a promising therapeutic strategy for malignant rhabdoid tumors.
- A genetic link exists between SWI/SNF complex mutations and the p53 tumor suppressor pathway in MRT.
- Preclinical data support the clinical investigation of MDM2 and MDM4 inhibitors for treating this pediatric cancer.
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