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Discovery and Characterization of Recurrent, Targetable ALK Fusions in Leiomyosarcoma
Lara E Davis1,2, Kevin D Nusser3, Joanna Przybyl4
1Knight Cancer Institute, Oregon Health and Sciences University, Portland, Oregon. davarem@ohsu.edu davisla@ohsu.edu.
Abstract:
Soft-tissue sarcomas such as leiomyosarcoma pose a clinical challenge because systemic treatment options show only modest therapeutic benefit. Discovery and validation of targetable vulnerabilities is essential. To discover putative kinase fusions, we analyzed existing transcriptomic data from leiomyosarcoma clinical samples. Potentially oncogenic ALK rearrangements were confirmed by application of multiple RNA-sequencing fusion detection algorithms and FISH. We functionally validated the oncogenic potential and targetability of discovered kinase fusions through biochemical, cell-based (Ba/F3, NIH3T3, and murine smooth muscle cell) and in vivo tumor modeling approaches. We identified ALK rearrangements in 9 of 377 (2.4%) patients with leiomyosarcoma, including a novel KANK2-ALK fusion and a recurrent ACTG2-ALK fusion. Functional characterization of the novel ALK fusion, KANK2-ALK, demonstrates it is a dominant oncogene in Ba/F3 or NIH3T3 model systems, and has tumorigenic potential when introduced into smooth muscle cells. Oral monotherapy with targeted ALK kinase inhibitor lorlatinib significantly inhibits tumor growth and prolongs survival in a murine model of KANK2-ALK leiomyosarcoma. These results provide the first functional validation of a targetable oncogenic kinase fusion as a driver in a subset of leiomyosarcomas. Overall, these findings suggest that some soft-tissue sarcomas may harbor previously unknown kinase gene translocations, and their discovery may propel new therapeutic strategies in this treatment-refractory cancer. IMPLICATIONS: A subset of leiomyosarcomas harbor previously unrecognized oncogenic ALK fusions that are highly responsive to ALK inhibitors and thus these data emphasize the importance of detailed genomic investigations of leiomyosarcoma tumors.
Insights
Researchers discovered new ALK gene fusions in leiomyosarcoma, a type of soft-tissue sarcoma. These fusions are targetable with ALK inhibitors, offering a promising new treatment strategy for this challenging cancer.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Soft-tissue sarcomas, including leiomyosarcoma, present significant treatment challenges due to limited efficacy of current systemic therapies.
- Identifying targetable molecular vulnerabilities is crucial for developing effective treatments for leiomyosarcoma.
Purpose of the Study:
- To discover and functionally validate oncogenic kinase fusions in leiomyosarcoma.
- To investigate the therapeutic potential of targeting these fusions.
Main Methods:
- Analysis of transcriptomic data from leiomyosarcoma clinical samples to identify kinase fusions.
- Confirmation of ALK rearrangements using RNA-sequencing fusion detection algorithms and FISH.
- Functional validation through biochemical assays, cell-based models (Ba/F3, NIH3T3, murine smooth muscle cells), and in vivo tumor modeling.
- Assessment of targeted ALK kinase inhibitor lorlatinib efficacy in a murine model.
Main Results:
- ALK rearrangements were identified in 2.4% of leiomyosarcoma patients (9/377).
- A novel KANK2-ALK fusion and a recurrent ACTG2-ALK fusion were discovered.
- The KANK2-ALK fusion demonstrated oncogenic potential and tumorigenicity in preclinical models.
- Lorlatinib treatment significantly inhibited tumor growth and improved survival in a KANK2-ALK leiomyosarcoma mouse model.
Conclusions:
- This study provides the first functional validation of oncogenic kinase fusions as drivers in a subset of leiomyosarcomas.
- The findings highlight the importance of genomic investigations to uncover novel kinase gene translocations in soft-tissue sarcomas.
- Targeting ALK fusions with inhibitors like lorlatinib represents a potential new therapeutic strategy for treatment-refractory leiomyosarcoma.
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