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Oncogenic Gene Fusion Detection Using Anchored Multiplex Polymerase Chain Reaction Followed by Next Generation Sequencing
Published on: July 5, 2019
Cost-Efficient Detection of NTRK1/2/3 Gene Fusions: Single-Center Analysis of 8075 Tumor Samples
Aleksandr A Romanko1, Rimma S Mulkidjan1, Vladislav I Tiurin1
1Department of Tumor Growth Biology, N.N. Petrov Institute of Oncology, 197758 St.-Petersburg, Russia.
Abstract:
The majority of NTRK1, NTRK2, and NTRK3 rearrangements result in increased expression of the kinase portion of the involved gene due to its fusion to an actively transcribed gene partner. Consequently, the analysis of 5'/3'-end expression imbalances is potentially capable of detecting the entire spectrum of NTRK gene fusions. Archival tumor specimens obtained from 8075 patients were subjected to manual dissection of tumor cells, DNA/RNA isolation, and cDNA synthesis. The 5'/3'-end expression imbalances in NTRK genes were analyzed by real-time PCR. Further identification of gene rearrangements was performed by variant-specific PCR for 44 common NTRK fusions, and, whenever necessary, by RNA-based next-generation sequencing (NGS). cDNA of sufficient quality was obtained in 7424/8075 (91.9%) tumors. NTRK rearrangements were detected in 7/6436 (0.1%) lung carcinomas, 11/137 (8.0%) pediatric tumors, and 13/851 (1.5%) adult non-lung malignancies. The highest incidence of NTRK translocations was observed in pediatric sarcomas (7/39, 17.9%). Increased frequency of NTRK fusions was seen in microsatellite-unstable colorectal tumors (6/48, 12.5%), salivary gland carcinomas (5/93, 5.4%), and sarcomas (7/143, 4.9%). None of the 1293 lung carcinomas with driver alterations in EGFR/ALK/ROS1/RET/MET oncogenes had NTRK 5'/3'-end expression imbalances. Variant-specific PCR was performed for 744 tumors with a normal 5'/3'-end expression ratio: there were no rearrangements in 172 EGFR/ALK/ROS1/RET/MET-negative lung cancers and 125 pediatric tumors, while NTRK3 fusions were detected in 2/447 (0.5%) non-lung adult malignancies. In conclusion, this study describes a diagnostic pipeline that can be used as a cost-efficient alternative to conventional methods of NTRK1-3 analysis.
Insights
This study developed a cost-efficient diagnostic pipeline to detect NTRK gene fusions in tumors. The method analyzes 5'/3'-end expression imbalances, offering an alternative to conventional NTRK1-3 analysis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- NTRK gene fusions can lead to increased kinase expression, driving oncogenesis.
- Detecting these fusions is crucial for targeted cancer therapy.
- Conventional methods for NTRK fusion detection can be complex and costly.
Purpose of the Study:
- To develop and validate a cost-efficient diagnostic pipeline for detecting NTRK1, NTRK2, and NTRK3 gene fusions.
- To analyze the frequency and spectrum of NTRK fusions across various tumor types.
- To establish a reliable method for identifying NTRK rearrangements using expression imbalances.
Main Methods:
- Analysis of 5'/3'-end expression imbalances in NTRK genes using real-time PCR on 8075 archival tumor specimens.
- Identification of gene rearrangements via variant-specific PCR for common fusions and RNA-based next-generation sequencing (NGS) when necessary.
- Manual dissection of tumor cells, DNA/RNA isolation, and cDNA synthesis were performed.
Main Results:
- NTRK rearrangements were detected in 8.0% of pediatric tumors and 1.5% of adult non-lung malignancies.
- The highest incidence was observed in pediatric sarcomas (17.9%) and microsatellite-unstable colorectal tumors (12.5%).
- No NTRK imbalances were found in lung carcinomas with known driver alterations (EGFR/ALK/ROS1/RET/MET).
Conclusions:
- A diagnostic pipeline analyzing 5'/3'-end expression imbalances effectively detects NTRK gene fusions.
- This approach serves as a cost-efficient alternative to conventional NTRK1-3 analysis methods.
- The study highlights the importance of NTRK fusion detection in specific cancer types, particularly pediatric malignancies and sarcomas.
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