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Updated: Dec 21, 2025

Genome-Wide CRISPR Screen for Unveiling Radiosensitive and Radioresistant Genes
Published on: May 23, 2025
CRISPR Screens Identify Essential Cell Growth Mediators in BRAF Inhibitor-resistant Melanoma
Ziyi Li1, Binbin Wang2, Shengqing Gu3
1Clinical Translational Research Center, Shanghai Pulmonary Hospital, School of Life Sciences and Technology, Tongji University, Shanghai 200092, China; Department of Medical Oncology, Dana-Farber Cancer Institute and Harvard Medical School, Boston, MA 02215, USA.
Abstract:
BRAF is a serine/threonine kinase that harbors activating mutations in ∼7% of human malignancies and ∼60% of melanomas. Despite initial clinical responses to BRAF inhibitors, patients frequently develop drug resistance. To identify candidate therapeutic targets for BRAF inhibitor resistant melanoma, we conduct CRISPR screens in melanoma cells harboring an activating BRAF mutation that had also acquired resistance to BRAF inhibitors. To investigate the mechanisms and pathways enabling resistance to BRAF inhibitors in melanomas, we integrate expression, ATAC-seq, and CRISPR screen data. We identify the JUN family transcription factors and the ETS family transcription factor ETV5 as key regulators of CDK6, which together enable resistance to BRAF inhibitors in melanoma cells. Our findings reveal genes contributing to resistance to a selective BRAF inhibitor PLX4720, providing new insights into gene regulation in BRAF inhibitor resistant melanoma cells.
Insights
Researchers identified JUN and ETV5 transcription factors as key regulators of CDK6, revealing new therapeutic targets for BRAF inhibitor-resistant melanoma. These findings offer insights into gene regulation in melanoma drug resistance.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Activating BRAF mutations are common in melanoma, leading to initial responses to BRAF inhibitors.
- Acquired drug resistance limits the long-term efficacy of BRAF inhibitors in melanoma patients.
- Understanding resistance mechanisms is crucial for developing effective therapeutic strategies.
Purpose of the Study:
- To identify novel therapeutic targets for BRAF inhibitor-resistant melanoma.
- To investigate the molecular mechanisms and pathways driving resistance to BRAF inhibitors.
- To elucidate gene regulatory networks in melanoma cells that confer resistance.
Main Methods:
- CRISPR screens were performed on melanoma cells with BRAF mutations and acquired resistance to BRAF inhibitors.
- Integration of transcriptomic, ATAC-seq, and CRISPR screen data was used to identify key regulators.
- Functional validation of identified genes in melanoma models.
Main Results:
- JUN family transcription factors and ETV5 were identified as key regulators of CDK6.
- These factors were found to enable resistance to BRAF inhibitors in melanoma cells.
- Specific genes contributing to resistance against the BRAF inhibitor PLX4720 were revealed.
Conclusions:
- JUN and ETV5, through regulation of CDK6, play a critical role in BRAF inhibitor resistance in melanoma.
- These findings provide new insights into gene regulation underlying melanoma drug resistance.
- Targeting JUN, ETV5, or CDK6 may represent a viable therapeutic strategy for resistant melanoma.
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