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Oncogenic Gene Fusion Detection Using Anchored Multiplex Polymerase Chain Reaction Followed by Next Generation Sequencing
Published on: July 5, 2019
Identification of NTRK gene fusions in lung adenocarcinomas in the Chinese population
Ruiying Zhao1, Feng Yao2, Chan Xiang1
1Department of Pathology, Shanghai Chest Hospital, Shanghai Jiao Tong University, Shanghai, PR China.
Abstract:
The molecular profile of neurotrophic tyrosine kinase receptor (NTRK) gene fusions in lung adenocarcinoma (LUAD) is not fully understood. Next-generation sequencing (NGS) and pan-tyrosine kinase receptor (TRK) immunohistochemistry (IHC) are powerful tools for NTRK fusion detection. In this study, a total of 4,619 LUAD formalin-fixed, paraffin-embedded tissues were collected from patients who underwent biopsy or resection at the Shanghai Chest Hospital during 2017-2019. All specimens were screened for NTRK1 rearrangements using DNA-based NGS. Thereafter, the cases with NTRK1 rearrangements and cases negative for common driver mutations were analyzed for NTRK1/2/3 fusions using total nucleic acid (TNA)-based NGS and pan-TRK IHC. Overall, four NTRK1/2 fusion events were identified, representing 0.087% of the original sample set. At the DNA level, seven NTRK1 rearrangements were identified, while only two TPM3-NTRK1 fusions were confirmed on TNA-based NGS as functional. In addition, two NTRK2 fusions (SQSTM1-NTRK2 and KIF5B-NTRK2) were identified by TNA-based NGS in 350 'pan-negative' cases. Two patients harboring NTRK1/2 fusions were diagnosed with invasive adenocarcinoma, while the other two were diagnosed with adenocarcinoma in situ and minimally invasive adenocarcinoma. All four samples with NTRK fusions were positive for the expression of pan-TRK. The two samples with NTRK2 fusions showed cytoplasmic staining alone, while the other two samples with NTRK1 fusions exhibited both cytoplasmic and membranous staining. In summary, functional NTRK fusions are found in early-stage LUAD; however, they are extremely rare. According to this study's results, they are independent oncogenic drivers, mutually exclusive with other driver mutations. We demonstrated that NTRK rearrangement analysis using a DNA-based approach should be verified with an RNA-based assay.
Insights
Neurotrophic tyrosine kinase receptor (NTRK) gene fusions are rare drivers in lung adenocarcinoma (LUAD), occurring in 0.087% of cases. DNA-based screening for NTRK rearrangements requires RNA-based confirmation for functional fusions.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Neurotrophic tyrosine kinase receptor (NTRK) gene fusions are emerging oncogenic drivers in various cancers, including lung adenocarcinoma (LUAD).
- Understanding the molecular profile and prevalence of NTRK fusions in LUAD is crucial for targeted therapy development.
- Next-generation sequencing (NGS) and immunohistochemistry (IHC) are key diagnostic tools for NTRK fusion detection.
Purpose of the Study:
- To investigate the frequency and molecular characteristics of NTRK gene fusions in a large cohort of LUAD patients.
- To evaluate the utility of DNA-based NGS, total nucleic acid (TNA)-based NGS, and pan-TRK IHC in identifying functional NTRK fusions.
- To determine the clinical significance and oncogenic role of NTRK fusions in LUAD.
Main Methods:
- A total of 4,619 LUAD tissue samples were analyzed using DNA-based NGS for NTRK1 rearrangements.
- Cases with NTRK1 rearrangements or negative for common driver mutations underwent TNA-based NGS and pan-TRK IHC for NTRK1/2/3 fusions.
- Functional fusions were confirmed by TNA-based NGS, and protein expression was assessed by IHC.
Main Results:
- Four functional NTRK1/2 fusion events were identified in 0.087% of the LUAD cohort.
- DNA-based NGS detected seven NTRK1 rearrangements, but only two TPM3-NTRK1 fusions were confirmed as functional by TNA-based NGS.
- Two NTRK2 fusions (SQSTM1-NTRK2, KIF5B-NTRK2) were identified in 'pan-negative' cases. All fusion-positive samples expressed pan-TRK.
Conclusions:
- Functional NTRK fusions are rare oncogenic drivers in early-stage LUAD, mutually exclusive with other driver mutations.
- DNA-based screening for NTRK rearrangements necessitates RNA-based assay validation to confirm functional fusions.
- Pan-TRK IHC is a valuable complementary tool for detecting NTRK fusion protein expression.

