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Updated: Aug 10, 2025

Genome-Wide CRISPR Screen for Unveiling Radiosensitive and Radioresistant Genes
Published on: May 23, 2025
Revolutionizing DNA repair research and cancer therapy with CRISPR-Cas screens
Samah W Awwad1,2, Almudena Serrano-Benitez3,4, John C Thomas5,6
1Cancer Research UK Cambridge Institute, University of Cambridge, Cambridge, UK.
Abstract:
All organisms possess molecular mechanisms that govern DNA repair and associated DNA damage response (DDR) processes. Owing to their relevance to human disease, most notably cancer, these mechanisms have been studied extensively, yet new DNA repair and/or DDR factors and functional interactions between them are still being uncovered. The emergence of CRISPR technologies and CRISPR-based genetic screens has enabled genome-scale analyses of gene-gene and gene-drug interactions, thereby providing new insights into cellular processes in distinct DDR-deficiency genetic backgrounds and conditions. In this Review, we discuss the mechanistic basis of CRISPR-Cas genetic screening approaches and describe how they have contributed to our understanding of DNA repair and DDR pathways. We discuss how DNA repair pathways are regulated, and identify and characterize crosstalk between them. We also highlight the impacts of CRISPR-based studies in identifying novel strategies for cancer therapy, and in understanding, overcoming and even exploiting cancer-drug resistance, for example in the contexts of PARP inhibition, homologous recombination deficiencies and/or replication stress. Lastly, we present the DDR CRISPR screen (DDRcs) portal , in which we have collected and reanalysed data from CRISPR screen studies and provide a tool for systematically exploring them.
Insights
CRISPR screens reveal new insights into DNA repair and DNA damage response (DDR) pathways. This technology aids in understanding cancer, developing new therapies, and overcoming drug resistance.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- Organisms have molecular mechanisms for DNA repair and DNA damage response (DDR).
- These mechanisms are crucial in human diseases like cancer.
- CRISPR technologies enable large-scale genetic screens for new discoveries.
Purpose of the Study:
- Review the mechanistic basis of CRISPR-Cas genetic screening.
- Explain CRISPR's contribution to understanding DNA repair and DDR pathways.
- Highlight CRISPR's impact on cancer therapy and drug resistance.
Main Methods:
- Discuss CRISPR-Cas genetic screening approaches.
- Analyze genome-scale gene-gene and gene-drug interactions.
- Present the DDR CRISPR screen (DDRcs) portal for data exploration.
Main Results:
- CRISPR screens provide new insights into DNA repair and DDR pathways.
- Identified novel factors and functional interactions within DDR.
- Characterized crosstalk between DNA repair pathways.
- Highlighted strategies for cancer therapy and overcoming drug resistance.
Conclusions:
- CRISPR-Cas screening is a powerful tool for studying DNA repair and DDR.
- This technology advances our understanding of cancer biology and treatment.
- The DDRcs portal offers a valuable resource for researchers.
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