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Oncogenic Gene Fusion Detection Using Anchored Multiplex Polymerase Chain Reaction Followed by Next Generation Sequencing
Published on: July 5, 2019
Integrated mate-pair and RNA sequencing identifies novel, targetable gene fusions in peripheral T-cell lymphoma
Rebecca L Boddicker1, Gina L Razidlo2, Surendra Dasari3
1Department of Laboratory Medicine and Pathology.
Abstract:
Peripheral T-cell lymphomas (PTCLs) represent a heterogeneous group of T-cell malignancies that generally demonstrate aggressive clinical behavior, often are refractory to standard therapy, and remain significantly understudied. The most common World Health Organization subtype is PTCL, not otherwise specified (NOS), essentially a "wastebasket" category because of inadequate understanding to assign cases to a more specific diagnostic entity. Identification of novel fusion genes has contributed significantly to improving the classification, biologic understanding, and therapeutic targeting of PTCLs. Here, we integrated mate-pair DNA and RNA next-generation sequencing to identify chromosomal rearrangements encoding expressed fusion transcripts in PTCL, NOS. Two of 11 cases had novel fusions involving VAV1, encoding a truncated form of the VAV1 guanine nucleotide exchange factor important in T-cell receptor signaling. Fluorescence in situ hybridization studies identified VAV1 rearrangements in 10 of 148 PTCLs (7%). These were observed exclusively in PTCL, NOS (11%) and anaplastic large cell lymphoma (11%). In vitro, ectopic expression of a VAV1 fusion promoted cell growth and migration in a RAC1-dependent manner. This growth was inhibited by azathioprine, a clinically available RAC1 inhibitor. We also identified novel kinase gene fusions, ITK-FER and IKZF2-ERBB4, as candidate therapeutic targets that show similarities to known recurrent oncogenic ITK-SYK fusions and ERBB4 transcript variants in PTCLs, respectively. Additional novel and potentially clinically relevant fusions also were discovered. Together, these findings identify VAV1 fusions as recurrent and targetable events in PTCLs and highlight the potential for clinical sequencing to guide individualized therapy approaches for this group of aggressive malignancies.
Insights
Novel VAV1 gene fusions were identified in aggressive peripheral T-cell lymphomas (PTCLs), offering new therapeutic targets. These findings in PTCL, not otherwise specified (NOS), could personalize treatment for these challenging cancers.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Peripheral T-cell lymphomas (PTCLs) are aggressive, heterogeneous, and poorly understood T-cell malignancies.
- PTCL, not otherwise specified (NOS), is the most common subtype and lacks specific diagnostic criteria.
- Identifying novel fusion genes is crucial for improving PTCL classification, understanding, and treatment.
Purpose of the Study:
- To identify novel fusion genes and chromosomal rearrangements in PTCL, NOS using integrated next-generation sequencing.
- To investigate the functional role of identified fusions in PTCL pathogenesis.
- To explore potential therapeutic targets for PTCL.
Main Methods:
- Integrated mate-pair DNA and RNA next-generation sequencing to detect fusion transcripts in PTCL, NOS.
- Fluorescence in situ hybridization (FISH) to confirm VAV1 rearrangements.
- In vitro cell culture to assess the functional impact of VAV1 fusions.
- Pharmacological inhibition studies using azathioprine.
Main Results:
- Novel VAV1 fusions were identified in 2 of 11 PTCL, NOS cases.
- VAV1 rearrangements were found in 7% of all PTCLs, exclusively in PTCL, NOS and anaplastic large cell lymphoma.
- Ectopic VAV1 fusion expression promoted cell growth and migration via RAC1, inhibited by azathioprine.
- Additional novel kinase gene fusions (ITK-FER, IKZF2-ERBB4) were discovered as potential therapeutic targets.
Conclusions:
- VAV1 fusions are recurrent and targetable events in PTCLs, particularly PTCL, NOS.
- These findings highlight the potential of clinical sequencing for guiding individualized PTCL therapy.
- Discovery of novel fusion genes advances the understanding and treatment strategies for aggressive T-cell malignancies.

