Related Experiment Video
Updated: Sep 14, 2025

Author Spotlight: Finding New Therapeutic Targets for Malignant Peripheral Nerve Sheath Tumor Through Genome-Scale shRNA Screens
Published on: August 25, 2023
CRISPR-Drug Combinatorial Screening Identifies Effective Combination Treatments for MTAP-Deleted Cancer
Nikola Knoll1,2,3, Sarah Masser4,5, Blanka Bordas1
1Fralin Biomedical Research Institute, Virginia Tech FBRI Cancer Research Center, Washington, District of Columbia.
Abstract:
Cyclin-dependent kinase inhibitor 2A (CDKN2A)/methylthioadenosine phosphorylase (MTAP) codeletion occurs frequently in non-small cell lung cancer and other solid tumors, including glioblastoma and pancreatic ductal adenocarcinoma. Lung cancer remains the leading cause of cancer-related mortality, and fewer than 15% of patients with glioblastoma or pancreatic cancer survive 5 years, underscoring the need for more effective therapies. Protein arginine methyltransferase 5 (PRMT5) is a synthetic-lethal dependency in MTAP-null tumors and an attractive therapeutic target for CDKN2A/MTAP-deleted cancers. A new revolutionary class of inhibitors, referred to as methylthioadenosine (MTA)-cooperative PRMT5 inhibitors (PRMT5i), has shown promising results in ongoing early-phase clinical trials. Nonetheless, effective cancer treatment typically requires therapeutic combinations to improve response rates and defeat emergent resistant clones. Thus, we sought to determine whether perturbation of other pathways could improve the efficacy of MTA-cooperative PRMT5is (MTAC-PRMT5i). Using a paralog and single gene targeting CRISPR library, we screened MTAP-deleted cancers in the presence or absence of MTAC-PRMT5is. Loss of several genes sensitized cells to PRMT5 inhibition, including members of the MAPK pathway. Chemical inhibition of MAPK pathway members using KRAS, MEK, ERK, and RAF inhibitors synergized with PRMT5 inhibition to kill CDKN2A/MTAP-null, RAS-active tumors. Furthermore, MTAC-PRMT5is combined with either KRAS or RAF inhibitors led to complete responses in vivo, emphasizing the potential benefit for patients. Lastly, cell lines resistant to KRAS inhibition were not resistant to MTAC-PRMT5is and vice versa, suggesting noncross-reactive mechanisms of resistance. Overall, this study identifies therapeutic combinations with MTAC-PRMT5is that may offer significant benefits to patients.
Significance:
Combining PRMT5 and MAPK pathway inhibitors leads to complete, durable responses in lung cancer models, providing an effective therapeutic strategy for the 4-5% of cancer patients harboring CDKN2A/MTAP deletion and MAPK alterations. See related article by Drizyte-Miller et al., p. 3540.
Insights
New research shows combining MTA-cooperative PRMT5 inhibitors with MAPK pathway inhibitors, like KRAS or RAF inhibitors, effectively kills CDKN2A/MTAP-deleted cancers. This combination therapy offers a promising new strategy for treating difficult-to-treat solid tumors.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- CDKN2A/MTAP co-deletion is common in lung, glioblastoma, and pancreatic cancers, which have poor prognoses.
- PRMT5 is a therapeutic target in MTAP-null tumors, with novel MTA-cooperative PRMT5 inhibitors showing early clinical promise.
- Effective cancer treatment often requires combination therapies to overcome resistance and improve outcomes.
Purpose of the Study:
- To identify other pathways that, when targeted, can enhance the efficacy of MTA-cooperative PRMT5 inhibitors.
- To investigate synergistic effects between PRMT5 inhibition and other pathway inhibitors in CDKN2A/MTAP-deleted cancers.
Main Methods:
- Utilized a CRISPR library screen to identify genetic dependencies in MTAP-deleted cancers treated with MTA-cooperative PRMT5 inhibitors.
- Employed chemical inhibitors targeting components of the MAPK pathway (KRAS, MEK, ERK, RAF) in combination with PRMT5 inhibitors.
- Evaluated combination efficacy in vitro and in vivo models of CDKN2A/MTAP-null, RAS-active tumors.
Main Results:
- Loss of several genes, including MAPK pathway members, sensitized MTAP-deleted cancers to PRMT5 inhibition.
- Combined inhibition of PRMT5 and MAPK pathway members (KRAS, RAF) demonstrated synergistic tumor cell killing.
- In vivo studies showed complete responses when MTA-cooperative PRMT5 inhibitors were combined with KRAS or RAF inhibitors.
- Observed non-cross-reactive resistance mechanisms between KRAS and PRMT5 inhibitors.
Conclusions:
- Therapeutic combinations of MTA-cooperative PRMT5 inhibitors with MAPK pathway inhibitors (KRAS, RAF) show significant potential for treating CDKN2A/MTAP-deleted cancers.
- These combinations may offer improved response rates and overcome resistance in difficult-to-treat solid tumors.
- Further clinical investigation of these combination strategies is warranted to benefit patients.
More Related Videos
Related Concept Videos
Combination Therapies and Personalized Medicine
The combination of the drug acetazolamide and sulforaphane is a good example of combination therapy to treat cancer. The cells in the interior of a large tumor often die due to the hypoxic and...
Targeted Cancer Therapies
There are several types of targeted therapies against...

