Down-regulation of interferon regulatory factor 2 binding protein 2 suppresses gastric cancer progression by

Yangyang Yao1, Yi Wang2, Li Li1

  • 1Department of Oncology, The First Affiliated Hospital of Nanchang University, Nanchang, Jiangxi Province, China.

Insights

Interferon regulatory factor 2 binding protein 2 (IRF2BP2) promotes gastric cancer (GC) progression and metastasis by upregulating connective tissue growth factor (CTGF). MiR-101-3p suppresses CTGF by targeting IRF2BP2, offering a potential therapeutic strategy for GC.

Area of Science:

  • Oncology
  • Molecular Biology
  • Gene Regulation

Background:

  • Interferon regulatory factor 2 binding protein 2 (IRF2BP2) is a transcriptional repressor with roles in tumorigenesis.
  • The clinical significance and specific functions of IRF2BP2 in human gastric cancer (GC) are not well understood.

Purpose of the Study:

  • To investigate the clinical significance and molecular mechanisms of IRF2BP2 in human gastric cancer.
  • To elucidate the role of the miR-101-3p-IRF2BP2-CTGF signaling axis in GC progression and metastasis.

Main Methods:

  • Immunohistochemistry (IHC) to detect IRF2BP2 protein levels in GC tissues.
  • Cellular assays (MTT, colony formation, Transwell) to assess proliferation, migration, and invasion.
  • Co-immunoprecipitation, dual-luciferase reporter assays to investigate molecular interactions and regulatory pathways.

Main Results:

  • IRF2BP2 expression was significantly elevated in GC tissues compared to normal tissues, correlating with lower patient survival.
  • IRF2BP2 knockdown inhibited GC cell proliferation, migration, invasion, and epithelial-mesenchymal transition.
  • IRF2BP2 knockdown reduced connective tissue growth factor (CTGF) levels; IRF2BP2 facilitates TEAD4-YAP1 binding and CTGF coactivation.
  • MiR-101-3p suppressed CTGF by directly targeting IRF2BP2's 3'-UTR.

Conclusions:

  • IRF2BP2 plays a crucial role in promoting GC progression and metastasis.
  • The miR-101-3p-IRF2BP2-CTGF signaling axis is a key mechanism in GC development.
  • Targeting this axis presents a novel therapeutic insight for GC treatment.

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