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Oncogenic Gene Fusion Detection Using Anchored Multiplex Polymerase Chain Reaction Followed by Next Generation Sequencing
Published on: July 5, 2019
Detection of Fusion Genes Using a Targeted RNA Sequencing Panel in Gastrointestinal and Rare Cancers
Su Jin Lee1,2, Jung Yong Hong1, Kyung Kim1
1Division of Hematology-Oncology, Department of Medicine, Sungkyunkwan University School of Medicine, Seoul, Republic of Korea.
Abstract:
Successful identification and targeting of oncogenic gene fusion is a major breakthrough in cancer treatment. Here, we investigate the therapeutic implications and feasibility of using a targeted RNA sequencing panel to identify fusion genes in gastrointestinal and rare cancers. From February through December 2017, patients with gastrointestinal, hepatobiliary, gynecologic, sarcoma, or rare cancers were recruited for a clinical sequencing project at Samsung Medical Center (NCT #02593578). The median age of the patients was 58 years (range, 31-81 years), and the male-to-female ratio was 1.3 : 1. A total of 118 patients passed the quality control process for a next-generation sequencing- (NGS-) based targeted sequencing assay. The NGS-based targeted sequencing assay was performed to detect gene fusions in 36-53 cancer-implicated genes. The following cancer types were included in this study: 28 colorectal cancers, 27 biliary tract cancers, 25 gastric cancers, 18 soft tissue sarcomas, 9 pancreatic cancers, 6 ovarian cancers, and 9 other rare cancers. Strong fusion was detected in 25 samples (21.2%). We found that 5.9% (7/118) of patients had known targetable fusion genes involving NTRK1 (n=3), FGFR (n=3), and RET (n=1), and 10.2% (12/118) of patients had potentially targetable fusion genes involving RAF1 (n=4), BRAF (n=2), ALK (n=2), ROS1 (n=1), EGFR (n=1), and CLDN18 (n=2). Thus, we successfully identified a substantial proportion of patients harboring fusion genes by RNA panel sequencing of gastrointestinal/rare cancers. Targetable and potentially targetable involved fusion genes were NTRK1, RET, FGFR3, FGFR2, BRAF, RAF1, ALK, ROS1, and CLDN18. Detection of fusion genes by RNA panel sequencing may be beneficial in refractory patients with gastrointestinal/rare cancers.
Insights
Targeted RNA sequencing effectively identified actionable gene fusions in gastrointestinal and rare cancers. This approach aids in discovering new therapeutic targets for patients with difficult-to-treat cancers.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Oncogenic gene fusions are key drivers in cancer development.
- Targeting these fusions offers a promising therapeutic strategy.
- Identifying fusion genes in gastrointestinal and rare cancers remains a challenge.
Purpose of the Study:
- To evaluate the efficacy of a targeted RNA sequencing panel for identifying gene fusions.
- To assess the therapeutic implications of detected fusion genes in gastrointestinal and rare cancers.
- To determine the feasibility of this approach in a clinical setting.
Main Methods:
- A targeted RNA sequencing panel was used to analyze gene fusions in 118 patients.
- Patients had gastrointestinal, hepatobiliary, gynecologic, sarcoma, or rare cancers.
- The panel interrogated 36-53 cancer-implicated genes.
Main Results:
- Gene fusions were detected in 21.2% (25/118) of patients.
- Known targetable fusion genes (NTRK1, FGFR, RET) were found in 5.9% (7/118).
- Potentially targetable fusion genes (RAF1, BRAF, ALK, ROS1, EGFR, CLDN18) were identified in 10.2% (12/118).
Conclusions:
- Targeted RNA panel sequencing successfully identified a significant proportion of patients with actionable fusion genes.
- This method is beneficial for discovering therapeutic targets in refractory gastrointestinal and rare cancers.
- Fusion genes like NTRK1, RET, FGFR, BRAF, ALK, ROS1, and CLDN18 are important targets.
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