Gene interactions and pathways from curated databases and text-mining
Oncogene 2000, PMID: 10918587

Transformation and Stat activation by derivatives of FGFR1, FGFR3, and FGFR4.

Hart, K C; Robertson, S C; Kanemitsu, M Y; Meyer, A N; Tynan, J A; Donoghue, D J

The fibroblast growth factor receptor (FGFR) family members mediate a number of important cellular processes, and are mutated or overexpressed in several forms of human cancer. Mutation of Lys650-->Glu in the activation loop of the FGFR3 kinase domain causes the lethal human skeletal disorder thanatophoric dysplasia type II (TDII) and is also found in patients with multiple myeloma, bladder and cervical carcinomas. This mutation leads to constitutive activation of FGFR3. To compare the signaling activity of FGFR family members, this activating mutation was generated in FGFR1, FGFR3, and FGFR4. We show that the kinase domains of FGFR1, FGFR3, and FGFR4 containing the activation loop mutation, when targeted to the plasma membrane by a myristylation signal, can transform NIH3T3 cells and induce neurite outgrowth in PC12 cells. Phosphorylation of Shp2, PLC-gamma, and MAPK was also stimulated by all three 'TDII-like' FGFR derivatives. Additionally, activation of Stat1 and Stat3 was observed in cells expressing the activated FGFR derivatives. Finally, we demonstrate that FGFR1, FGFR3, and FGFR4 derivatives can stimulate PI-3 kinase activity. Our comparison of these activated receptor derivatives reveals a significant overlap in the panel of effector proteins used to mediate downstream signals. This also represents the first demonstration that activation of FGFR4, in addition to FGFR1 and FGFR3, can induce cellular transformation. Moreover, our results suggest that Stat activation by FGFRs is important in their ability to act as oncogenes.

Diseases/Pathways annotated by Medline MESH: Cell Transformation, Neoplastic
Document information provided by NCBI PubMed

Text Mining Data

MAPK → FGFR: " Phosphorylation of Shp2, PLC-gamma, and MAPK was also stimulated by all three ` TDII-like ' FGFR derivatives "

PLC-gamma → FGFR: " Phosphorylation of Shp2, PLC-gamma , and MAPK was also stimulated by all three ` TDII-like ' FGFR derivatives "

Shp2 → FGFR: " Phosphorylation of Shp2 , PLC-gamma, and MAPK was also stimulated by all three ` TDII-like ' FGFR derivatives "

PI-3 → FGFR1: " Finally, we demonstrate that FGFR1 , FGFR3, and FGFR4 derivatives can stimulate PI-3 kinase activity "

PI-3 → FGFR3: " Finally, we demonstrate that FGFR1, FGFR3 , and FGFR4 derivatives can stimulate PI-3 kinase activity "

Manually curated Databases

  • IRef Biogrid Interaction: FGFR3 — FGFR3 (direct interaction, enzymatic study)
  • IRef Biogrid Interaction: FGFR1 — FGFR1 (direct interaction, enzymatic study)
  • IRef Biogrid Interaction: FGFR4 — FGFR4 (direct interaction, enzymatic study)
  • IRef Hprd Interaction: FGFR4 — STAT3 (in vivo)
  • IRef Hprd Interaction: FGFR4 — STAT3 (in vitro)
  • IRef Hprd Interaction: LCK — STAT1 (in vitro)
  • IRef Hprd Interaction: LCK — STAT1 (in vivo)
  • IRef Hprd Interaction: STAT1 — JAK1 (in vivo)
  • IRef Hprd Interaction: STAT1 — JAK1 (in vitro)
  • IRef Hprd Interaction: FGFR3 — STAT3 (in vivo)
  • IRef Hprd Interaction: FGFR3 — STAT3 (in vitro)
  • IRef Hprd Interaction: FGFR3 — STAT1 (in vivo)
  • IRef Hprd Interaction: FGFR3 — STAT1 (in vitro)
  • IRef Hprd Interaction: HCK — STAT3 (in vivo)
  • IRef Hprd Interaction: HCK — STAT3 (in vitro)
  • IRef Hprd Interaction: STAT3 — JAK2 (in vitro)
  • IRef Hprd Interaction: STAT3 — JAK2 (in vivo)
  • IRef Hprd Interaction: STAT1 — EGFR (in vitro)
  • IRef Hprd Interaction: STAT1 — EGFR (in vivo)
  • IRef Hprd Interaction: FGFR4 — FGFR4 (in vivo)
  • IRef Hprd Interaction: FGFR4 — FGFR4 (in vitro)
  • IRef Hprd Interaction: TYK2 — STAT1 (in vivo)
  • IRef Hprd Interaction: TYK2 — STAT1 (in vitro)
  • IRef Hprd Interaction: FGFR4 — STAT1 (in vitro)
  • IRef Hprd Interaction: FGFR4 — STAT1 (in vivo)
  • IRef Hprd Interaction: STAT3 — JAK1 (in vitro)
  • IRef Hprd Interaction: STAT3 — JAK1 (in vivo)
  • IRef Hprd Interaction: STAT1 — JAK2 (in vivo)
  • IRef Hprd Interaction: STAT1 — JAK2 (in vitro)
  • IRef Hprd Interaction: SRC — STAT3 (in vitro)
  • IRef Hprd Interaction: SRC — STAT3 (in vivo)
  • Reactome Reaction: FGF22 → PLCG1 (reaction)
  • Reactome Reaction: FGF16 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF1 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF20 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF17 → GRB2 (reaction)
  • Reactome Reaction: FGFR3 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF4 → PLCG1 (reaction)
  • Reactome Reaction: FGF5 → GRB2 (reaction)
  • Reactome Reaction: FGF5 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGFR1OP → STAT3 (reaction)
  • Reactome Reaction: FGF23 → PLCG1 (reaction)
  • Reactome Reaction: FGF3 → GRB2 (reaction)
  • Reactome Reaction: FGF18 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF9 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF16 → PLCG1 (reaction)
  • Reactome Reaction: FGF7 → GRB2 (indirect_complex)
  • Reactome Reaction: PLCG1 → FGFR2 (indirect_complex)
  • Reactome Reaction: PLCG1 → FGFR1 (indirect_complex)
  • Reactome Reaction: FGFR1 → SOS1 (reaction)
  • Reactome Reaction: FGF8 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF23 → GRB2 (reaction)
  • Reactome Reaction: FGF16 → SOS1 (reaction)
  • Reactome Reaction: FGF23 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF18 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF10 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF8 → GRB2 (reaction)
  • Reactome Reaction: FGF1 → SOS1 (reaction)
  • Reactome Reaction: FGF8 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF10 → SOS1 (reaction)
  • Reactome Reaction: FGF10 → PLCG1 (reaction)
  • Reactome Reaction: FGF5 → PLCG1 (reaction)
  • Reactome Reaction: FGFR2 → SOS1 (reaction)
  • Reactome Reaction: FGF22 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF9 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF4 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF5 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF16 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF17 → GRB2 (indirect_complex)
  • Reactome Reaction: FGFR3 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF3 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF2 → GRB2 (reaction)
  • Reactome Reaction: FGFR2 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF10 → GRB2 (reaction)
  • Reactome Reaction: FGF23 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGFR4 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF6 → GRB2 (reaction)
  • Reactome Reaction: FGF6 → PLCG1 (reaction)
  • Reactome Reaction: GRB2 → FGFR3 (indirect_complex)
  • Reactome Reaction: FGF9 → PLCG1 (reaction)
  • Reactome Reaction: FGF18 → PLCG1 (reaction)
  • Reactome Reaction: FGF1 → GRB2 (reaction)
  • Reactome Reaction: FGF20 → GRB2 (reaction)
  • Reactome Reaction: FGF8 → PLCG1 (reaction)
  • Reactome Reaction: FGFR1 → PLCG1 (reaction)
  • Reactome Reaction: SOS1 → FGFR1 (indirect_complex)
  • Reactome Reaction: FGFR1 → GRB2 (reaction)
  • Reactome Reaction: SOS1 → FGFR2 (indirect_complex)
  • Reactome Reaction: FGF2 → SOS1 (reaction)
  • Reactome Reaction: FGF22 → SOS1 (reaction)
  • Reactome Reaction: SOS1 → FGFR2 (reaction)
  • Reactome Reaction: FGFR3 → PLCG1 (reaction)
  • Reactome Reaction: FGFR2 → GRB2 (reaction)
  • Reactome Reaction: FGF18 → GRB2 (reaction)
  • Reactome Reaction: FGF6 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF2 → PLCG1 (reaction)
  • Reactome Reaction: FGF7 → SOS1 (reaction)
  • Reactome Reaction: FGF18 → SOS1 (reaction)
  • Reactome Reaction: SOS1 → FRS2 (reaction)
  • Reactome Reaction: FGF20 → PLCG1 (reaction)
  • Reactome Reaction: FGFR4 → SOS1 (reaction)
  • Reactome Reaction: FGF22 → SOS1 (indirect_complex)
  • Reactome Reaction: PLCG1 → FGFR3 (indirect_complex)
  • Reactome Reaction: GRB2 → FGFR2 (indirect_complex)
  • Reactome Reaction: GRB2 → FGFR2 (reaction)
  • Reactome Reaction: FGFR2 → PLCG1 (indirect_complex)
  • Reactome Reaction: SOS1 → FRS2 (indirect_complex)
  • Reactome Reaction: FGF4 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF16 → GRB2 (reaction)
  • Reactome Reaction: FGF17 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGFR1 → SOS1 (indirect_complex)
  • Reactome Reaction: GRB2 → FGFR3 (reaction)
  • Reactome Reaction: FGF18 → GRB2 (indirect_complex)
  • Reactome Reaction: SOS1 → FGFR3 (reaction)
  • Reactome Reaction: FGF23 → GRB2 (indirect_complex)
  • Reactome Reaction: SOS1 → FGFR1 (reaction)
  • Reactome Reaction: FGFR4 → GRB2 (reaction)
  • Reactome Reaction: FGF23 → SOS1 (reaction)
  • Reactome Reaction: FGF1 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGFR4 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF20 → SOS1 (reaction)
  • Reactome Reaction: PLCG1 → FGFR1 (reaction)
  • Reactome Reaction: FGFR1 → FGFR1 (reaction)
  • Reactome Reaction: FGF8 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF5 → SOS1 (reaction)
  • Reactome Reaction: FGF7 → PLCG1 (reaction)
  • Reactome Reaction: PLCG1 → FGFR3 (reaction)
  • Reactome Reaction: FGFR4 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF22 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF8 → SOS1 (reaction)
  • Reactome Reaction: GRB2 → FGFR1 (indirect_complex)
  • Reactome Reaction: SOS1 → FGFR3 (indirect_complex)
  • Reactome Reaction: PLCG1 → FGFR2 (reaction)
  • Reactome Reaction: FGFR3 → GRB2 (reaction)
  • Reactome Reaction: FGF3 → PLCG1 (reaction)
  • Reactome Reaction: FGF17 → PLCG1 (reaction)
  • Reactome Reaction: GRB2 → FRS2 (reaction)
  • Reactome Reaction: GRB2 → FRS2 (indirect_complex)
  • Reactome Reaction: FGF4 → GRB2 (indirect_complex)
  • Reactome Reaction: FGFR2 → PLCG1 (reaction)
  • Reactome Reaction: FGFR1 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF7 → GRB2 (reaction)
  • Reactome Reaction: FGFR4 → PLCG1 (reaction)
  • Reactome Reaction: FGF10 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF3 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF16 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF2 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF2 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF9 → SOS1 (reaction)
  • Reactome Reaction: FGF1 → PLCG1 (reaction)
  • Reactome Reaction: FGF3 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGFR1 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF20 → SOS1 (indirect_complex)
  • Reactome Reaction: FGFR2 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF22 → GRB2 (reaction)
  • Reactome Reaction: FGF7 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGF6 → PLCG1 (indirect_complex)
  • Reactome Reaction: GRB2 → FGFR1 (reaction)
  • Reactome Reaction: FGF20 → GRB2 (indirect_complex)
  • Reactome Reaction: FGFR3 → PLCG1 (indirect_complex)
  • Reactome Reaction: FGFR3 → SOS1 (reaction)
  • Reactome Reaction: FGF17 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF2 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF6 → SOS1 (reaction)
  • Reactome Reaction: FGF1 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF10 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF17 → SOS1 (reaction)
  • Reactome Reaction: FGFR1OP → STAT1 (reaction)
  • Reactome Reaction: FGF5 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF9 → GRB2 (reaction)
  • Reactome Reaction: FGF3 → SOS1 (reaction)
  • Reactome Reaction: FGF6 → GRB2 (indirect_complex)
  • Reactome Reaction: FGF4 → GRB2 (reaction)
  • Reactome Reaction: FGF4 → SOS1 (reaction)
  • Reactome Reaction: FGF7 → SOS1 (indirect_complex)
  • Reactome Reaction: FGF9 → GRB2 (indirect_complex)
In total, 80 gene pairs are associated to this article in curated databases