FIBP interacts with transcription factor STAT3 to induce EME1 expression and drive radioresistance in lung adenocarcinoma

Int J Biol Sci. 2023 Jul 24;19(12):3816-3829. doi: 10.7150/ijbs.83134. eCollection 2023.

Abstract

Cancer cells inevitably develop radioresistance during lung adenocarcinoma radiotherapy. However, the mechanisms are incompletely clarified. In this study, we show that FIBP protein expression in lung adenocarcinoma tissues is upregulated and associated with worse overall survival. Functionally, we find that depletion of FIBP inhibits lung adenocarcinoma progression and radioresistance in vitro and in vivo. Moreover, we uncover that FIBP interacts with STAT3 to enhance its transcriptional activity, thereby inducing the expression of the downstream target gene EME1. Importantly, we demonstrate that the biological effects of FIBP are partially dependent on EME1 in lung adenocarcinoma. Our work reveals that FIBP modulates the STAT3/EME1 axis to drive lung cancer progression and radioresistance, indicating that targeting FIBP may be a novel intervention strategy for lung adenocarcinoma radiotherapy.

Keywords: EME1; FIBP; STAT3; lung adenocarcinoma; radioresistance.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adenocarcinoma of Lung* / genetics
  • Adenocarcinoma of Lung* / radiotherapy
  • Adenocarcinoma* / genetics
  • Adenocarcinoma* / pathology
  • Adenocarcinoma* / radiotherapy
  • Carrier Proteins / genetics
  • Cell Line, Tumor
  • Humans
  • Lung Neoplasms* / genetics
  • Lung Neoplasms* / pathology
  • Lung Neoplasms* / radiotherapy
  • Membrane Proteins / metabolism
  • STAT3 Transcription Factor / genetics
  • STAT3 Transcription Factor / metabolism
  • Transcription Factors / metabolism

Substances

  • Transcription Factors
  • STAT3 Transcription Factor
  • STAT3 protein, human
  • FIBP protein, human
  • Carrier Proteins
  • Membrane Proteins