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FGF2 antiproliferative stimulation induces proteomic dynamic changes and high expression of FOSB and JUNB in K-ras-driven mouse tumor cells
Vitorino, Francisca Nathália de Luna; Montoni, Fábio; Moreno, Jaqueline Neves; Souza, Bruno Ferreira de; Lopes, Mariana de Camargo; Cordeiro, Barbara; Fonseca, Cecília Sella; Gilmore, Joshua M; Sardiu, Mihaela I; Reis, Marcelo da Silva; Florens, Laurence A; Washburn, Michael P; Armelin, Hugo Aguirre; da Cunha, Julia Pinheiro Chagas.
Affiliation
  • Vitorino, Francisca Nathália de Luna; Instituto Butantan. Laboratório Especial de Ciclo Celular.
  • Montoni, Fábio; Instituto Butantan. Laboratório Especial de Ciclo Celular.
  • Moreno, Jaqueline Neves; Instituto Butantan. Laboratório Especial de Toxinologia Aplicada (LETA).
  • Souza, Bruno Ferreira de; Instituto Butantan. Laboratório Especial de Ciclo Celular.
  • Lopes, Mariana de Camargo; Instituto Butantan. Laboratório Especial de Toxinologia Aplicada (LETA).
  • Cordeiro, Barbara; Instituto Butantan. Laboratório Especial de Ciclo Celular.
  • Fonseca, Cecília Sella; Instituto Butantan. Laboratório Especial de Ciclo Celular.
  • Gilmore, Joshua M; Instituto Butantan. Laboratório Especial de Ciclo Celular.
  • Sardiu, Mihaela I; Instituto Butantan. Laboratório Especial de Ciclo Celular.
  • Reis, Marcelo da Silva; Instituto Butantan. Laboratório Especial de Ciclo Celular.
Proteomics ; 18(17): 1800203, 2018.
Article in English | Sec. Est. Saúde SP, SESSP-IBPROD, Sec. Est. Saúde SP | ID: but-ib15799
Responsible library: BR78.1
Localization: BR78.1
ABSTRACT
Fibroblast growth factor 2 (FGF2) is a well-known cell proliferation promoter; however, it can also induce cell cycle arrest. To gain insight into the molecular mechanisms of this antiproliferative effect, for the first time, the early systemic proteomic differences induced by this growth factor in a K-Ras-driven mouse tumor cell line using a quantitative proteomics approach are investigated. More than 2900 proteins are quantified, indicating that terms associated with metabolism, RNA processing, replication, and transcription are enriched among proteins differentially expressed upon FGF2 stimulation. Proteomic trend dynamics indicate that, for proteins mainly associated with DNA replication and carbohydrate metabolism, an FGF2 stimulus delays their abundance changes, whereas FGF2 stimulation accelerates other metabolic programs. Transcription regulatory network analysis indicates master regulators of FGF2 stimulation, including two critical transcription factors, FOSB and JUNB. Their expression dynamics, both in the Y1 cell line (a murine model of adenocarcinoma cells) and in two other human cell lines (SK-N-MC and UM-UC-3) also susceptible to FGF2 antiproliferative effects, are investigated. Both protein expression levels depend on fibroblast growth factor receptor (FGFR) and src signaling. JUNB and FOSB knockdown do not rescue cells from the growth arrest induced by FGF2; however, FOSB knockdown rescue cells from DNA replication delay, indicating that FOSB expression underlies one of the FGF2 antiproliferative effects, namely, S-phase progression delay.
Full text: Available Collection: National databases / Brazil Database: Sec. Est. Saúde SP / SESSP-IBPROD Language: English Journal: Proteomics Year: 2018 Document type: Article
Full text: Available Collection: National databases / Brazil Database: Sec. Est. Saúde SP / SESSP-IBPROD Language: English Journal: Proteomics Year: 2018 Document type: Article
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