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Whole exome sequencing identifies a germline MET mutation in two siblings with hereditary wild-type RET medullary thyroid cancer.

Marialuisa SponzielloSilvia BenvenutiAlessandra GentileValeria PecceFrancesca RosignoloAnna Rita VirzìMelissa MilanPaolo M ComoglioEric LondinPaolo FortinaAgnese BarnabeiMarialuisa AppetecchiaFerdinando MarandinoDiego RussoSebastiano FilettiCosimo DuranteAntonella Verrienti
Published in: Human mutation (2017)
Whole exome sequencing (WES) was used to investigate two Italian siblings with wild-type RET genotype, who developed medullary thyroid cancers (MTCs) and, later, primary prostate and breast cancers, respectively. The proband's MTC harbored a p.Met918Thr RET mutation; his sister's MTC was RET/RAS wild-type. Both siblings had a germline mutation (p.Arg417Gln) in the extracellular Sema domain of the proto-oncogene MET. Experiments involving ectopic expression of MET p.Arg417Gln in MET-negative T47D breast cancer cells documented the mutant receptor's functionality and its ability to enhance cell migration and invasion. Our findings highlight a possible link between MET germline mutations and MTCs and suggest that MET p. Arg417Gln may promote an invasive malignant phenotype. The possibility that MTC can be driven/co-driven by a MET mutation has potential management implications, since the tyrosine-kinase inhibitor cabozantinib-approved for treating advanced MTCs-is a specific MET inhibitor.
Keyphrases
  • wild type
  • tyrosine kinase
  • prostate cancer
  • intellectual disability
  • poor prognosis
  • stem cells
  • gene expression
  • single cell
  • genome wide
  • dna methylation
  • bone marrow
  • binding protein