Atypical cellular responses mediated by intracellular constitutive active TrkB (NTRK2) kinase domains and a solely intracellular NTRK2-fusion oncogene.
Rohini GuptaMelanie DittmeierGisela WohllebenVera NicklThorsten BischlerVanessa LuzakVanessa WegatDennis DollAnnemarie SodmannElena BadyGeorg LanglhoferBritta WachterSteven HavlicekJahnve GuptaEvi HornPatrick LüningschrörCarmen VillmannBülent PolatJörg WischhusenCamelia M MonoranuJochen KuperRobert BlumPublished in: Cancer gene therapy (2024)
Trk (NTRK) receptor and NTRK gene fusions are oncogenic drivers of a wide variety of tumors. Although Trk receptors are typically activated at the cell surface, signaling of constitutive active Trk and diverse intracellular NTRK fusion oncogenes is barely investigated. Here, we show that a high intracellular abundance is sufficient for neurotrophin-independent, constitutive activation of TrkB kinase domains. In HEK293 cells, constitutive active TrkB kinase and an intracellular NTRK2-fusion oncogene (SQSTM1-NTRK2) reduced actin filopodia dynamics, phosphorylated FAK, and altered the cell morphology. Atypical cellular responses could be mimicked with the intracellular kinase domain, which did not activate the Trk-associated MAPK/ERK pathway. In glioblastoma-like U87MG cells, expression of TrkB or SQSTM1-NTRK2 reduced cell motility and caused drastic changes in the transcriptome. Clinically approved Trk inhibitors or mutating Y 705 in the kinase domain, blocked the cellular effects and transcriptome changes. Atypical signaling was also seen for TrkA and TrkC. Moreover, hallmarks of atypical pTrk kinase were found in biopsies of Nestin-positive glioblastoma. Therefore, we suggest Western blot-like immunoassay screening of NTRK-related (brain) tumor biopsies to identify patients with atypical panTrk or phosphoTrk signals. Such patients could be candidates for treatment with NTRK inhibitors such as Larotrectinhib or Entrectinhib.
Keyphrases
- protein kinase
- single cell
- reactive oxygen species
- induced apoptosis
- tyrosine kinase
- signaling pathway
- genome wide
- gene expression
- cell surface
- cell cycle arrest
- stem cells
- pi k akt
- oxidative stress
- newly diagnosed
- poor prognosis
- prognostic factors
- high resolution
- mass spectrometry
- copy number
- ultrasound guided
- combination therapy
- high speed
- patient reported
- antibiotic resistance genes