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CRISPR-Cas9 for selective targeting of somatic mutations in pancreatic cancers
Selina Shiqing K Teh1, Kirsten Bowland1, Alexis Bennett1
1Department of Pathology, The Sol Goldman Pancreatic Cancer Research Center, The Johns Hopkins University School of Medicine, Baltimore, MD, USA.
Abstract:
Somatic mutations are desirable targets for selective elimination of cancer, yet most are found within the noncoding regions. We propose a novel, cancer-specific killing approach using CRISPR-Cas9 which exploits the requirement of a protospacer adjacent motif (PAM) for Cas9 activity. Through whole genome sequencing (WGS) of paired tumor minus normal (T-N) samples from three pancreatic cancer patients (Panc480, Panc504, and Panc1002), we identified an average of 417 somatic PAMs per tumor produced from single base substitutions. We analyzed 591 paired T-N samples from The International Cancer Genome Consortium and discovered medians of ~455 somatic PAMs per tumor in pancreatic, ~2800 in lung, and ~3200 in esophageal cancer cohorts. Finally, we demonstrated >80% selective cell death of two targeted pancreatic cancer cell lines in co-cultures using 4-9 sgRNAs, targeting noncoding regions, designed from the somatic PAM discovery approach. We also showed no off-target activity from these tumor-specific sgRNAs through WGS.
Insights
This study introduces a new CRISPR-Cas9 method to target cancer by exploiting somatic mutations in noncoding DNA. The approach successfully eliminated over 80% of targeted pancreatic cancer cells with no observed off-target effects.
Area of Science:
- Genetics
- Molecular Biology
- Cancer Research
Background:
- Somatic mutations are key targets for cancer therapy, but many occur in noncoding regions.
- Current cancer therapies often struggle to selectively target cancer cells based on somatic mutations.
Conclusions:
- The novel CRISPR-Cas9 approach effectively targets cancer-specific somatic mutations in noncoding regions.
- This method offers a promising strategy for selective cancer cell elimination with high efficacy and safety.
- The discovery of numerous somatic PAMs across different cancer types highlights the broad applicability of this technique.
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