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Published on: June 17, 2022
RNAi screen for rapid therapeutic target identification in leukemia patients
Jeffrey W Tyner1, Michael W Deininger, Marc M Loriaux
1Division of Hematology and Medical Oncology, Oregon Health and Science University Knight Cancer Institute, Portland, OR 97239, USA.
Abstract:
Targeted therapy has vastly improved outcomes in certain types of cancer. Extension of this paradigm across a broad spectrum of malignancies will require an efficient method to determine the molecular vulnerabilities of cancerous cells. Improvements in sequencing technology will soon enable high-throughput sequencing of entire genomes of cancer patients; however, determining the relevance of identified sequence variants will require complementary functional analyses. Here, we report an RNAi-assisted protein target identification (RAPID) technology that individually assesses targeting of each member of the tyrosine kinase gene family. We demonstrate that RAPID screening of primary leukemia cells from 30 patients identifies targets that are critical to survival of the malignant cells from 10 of these individuals. We identify known, activating mutations in JAK2 and K-RAS, as well as patient-specific sensitivity to down-regulation of FLT1, CSF1R, PDGFR, ROR1, EPHA4/5, JAK1/3, LMTK3, LYN, FYN, PTK2B, and N-RAS. We also describe a previously undescribed, somatic, activating mutation in the thrombopoietin receptor that is sensitive to down-stream pharmacologic inhibition. Hence, the RAPID technique can quickly identify molecular vulnerabilities in malignant cells. Combination of this technique with whole-genome sequencing will represent an ideal tool for oncogenic target identification such that specific therapies can be matched with individual patients.
Insights
A new RNAi-assisted protein target identification (RAPID) technology rapidly identifies critical molecular vulnerabilities in cancer cells. This method aids in matching patients with targeted therapies by pinpointing essential genes for cancer survival.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Targeted therapies have improved cancer treatment outcomes.
- Identifying molecular vulnerabilities in cancer cells is crucial for expanding targeted therapy.
- High-throughput sequencing generates vast data, necessitating functional validation of genetic variants.
Purpose of the Study:
- To develop and validate an RNAi-assisted protein target identification (RAPID) technology.
- To efficiently assess the targeting of each member of the tyrosine kinase gene family.
- To identify critical molecular vulnerabilities in primary leukemia cells.
Main Methods:
- RNAi-assisted protein target identification (RAPID) technology was employed.
- RAPID screening was performed on primary leukemia cells from 30 patients.
- Tyrosine kinase gene family members were individually assessed for targeting.
Main Results:
- RAPID screening identified critical survival targets in 10 out of 30 leukemia patients.
- Known mutations (JAK2, K-RAS) and patient-specific sensitivities were identified.
- A novel somatic activating mutation in the thrombopoietin receptor was discovered.
Conclusions:
- The RAPID technique efficiently identifies molecular vulnerabilities in malignant cells.
- Combining RAPID with whole-genome sequencing offers an ideal approach for oncogenic target identification.
- This integrated approach facilitates personalized therapy matching for cancer patients.
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