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Phospholipase C gamma 1 (PLCG1) R707Q mutation is counterselected under targeted therapy in a patient with hepatic
Hans Prenen1, Dominiek Smeets2,3, Massimiliano Mazzone4,5
1Digestive Oncology, University Hospitals Leuven and Department of Oncology, KU Leuven, Leuven, Belgium.
Abstract:
Hepatic angiosarcoma is a rare and aggressive vascular neoplasm. Pathogenic driver mutations are largely unknown. We present the case of a patient with recurrent hepatic angiosarcoma, who initially showed good response to sunitinib, followed by progression. Using comprehensive molecular techniques, we explored the potential mechanisms of resistance. By low-read-depth whole-genome sequencing, the comparison of copy number aberrations (CNAs) of the primary tumor to the skin metastatic lesion that developed after progression on sunitinib, revealed high-level amplification of the 4q11-q13.1 region (containing KIT, PDGFRA and VEGFR2 genes) that was sustained in both lesions. Whole exome sequencing on the germline, primary and metastatic tumor DNAs, resulted in 27 confirmed mutations, 19 of which (including TP53 mutation) presented in both primary and metastatic lesions. One mutation, ZNF331 frameshift deletion, was detected only in the primary tumor. In contrast, seven other mutations, including phospholipase C-gamma1 (PLCG1) R707Q mutation, were found only in the metastatic tumor, indicating selection of cells with the resistant genotype under sunitinib pressure. Our study supports the notion that PLCG1-R707Q mutation may confer VEGFR2-independent signaling and may thus cause resistance against VEGF(R)-directed therapies. This case illustrates also the advantages of using next-generation technologies in identifying individualized targeted therapy.
Insights
This study identifies a new mutation, phospholipase C-gamma1 (PLCG1) R707Q, as a cause of resistance to sunitinib in hepatic angiosarcoma. This finding highlights the importance of next-generation sequencing for personalized cancer treatment.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Hepatic angiosarcoma is a rare, aggressive vascular tumor with largely unknown pathogenic drivers.
- Understanding resistance mechanisms is crucial for improving treatment outcomes.
Observation:
- A patient with hepatic angiosarcoma initially responded to sunitinib but later progressed.
- Comprehensive molecular analysis revealed copy number aberrations and specific mutations in primary and metastatic tumors.
Findings:
- High-level amplification of the 4q11-q13.1 region (KIT, PDGFRA, VEGFR2) was observed in both primary and metastatic lesions.
- A novel phospholipase C-gamma1 (PLCG1) R707Q mutation was identified exclusively in the metastatic tumor, suggesting it confers resistance to sunitinib.
- TP53 mutations were present in both tumor stages, while ZNF331 frameshift deletion was unique to the primary tumor.
Implications:
- The PLCG1-R707Q mutation may drive VEGFR2-independent signaling, leading to resistance against VEGF(R)-targeted therapies.
- This case underscores the utility of next-generation sequencing in identifying individualized targeted therapies for cancer.
- Further research into PLCG1 mutations could lead to novel therapeutic strategies for resistant hepatic angiosarcoma.
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