Deletion of SMURF 1 represses ovarian cancer invasion and EMT by modulating the DAB2IP/AKT/Skp2 feedback loop

Xiuhua Fan1, Yan Wang2, Jiajia Fan3

  • 1Department of Gynecology, No. 731 Hospital of China Aerospace Science & Industry Corporation, Beijing, People's Republic of China.

Insights

SMAD ubiquitination regulatory factor 1 (SMURF1) suppresses ovarian cancer cell proliferation and invasion. Its absence activates DAB2IP/AKT/Skp2 signaling, hindering epithelial-to-mesenchymal transition (EMT) and suggesting SMURF1 as a therapeutic target.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cell Biology

Background:

  • SMAD ubiquitination regulatory factor 1 (SMURF1) is a known tumor suppressor in various cancers.
  • The role of SMURF1 in ovarian cancer invasion and epithelial-to-mesenchymal transition (EMT) is not well understood.

Purpose of the Study:

  • To investigate the effect of SMURF1 on ovarian cancer cell migration and EMT.
  • To elucidate the molecular mechanisms underlying SMURF1's function in ovarian carcinoma.

Main Methods:

  • Assessed SMURF1 expression in ovarian cancer cells (mRNA and protein).
  • Utilized SMURF1 silencing in SKOV3 and A2780 cells to evaluate effects on proliferation, invasion, and EMT markers.
  • Investigated the impact of SMURF1 depletion on DAB2IP activation and AKT/Skp2 signaling.
  • Examined the rescue effects of DAB2IP depletion or AKT agonist treatment.

Main Results:

  • SMURF1 expression was elevated in ovarian cancer cells.
  • SMURF1 silencing reduced cell proliferation, invasion, and expression of PCNA, MMP-2, and MMP-9.
  • SMURF1 depletion inhibited EMT by increasing E-cadherin and decreasing N-cadherin and vimentin.
  • SMURF1 absence led to disabled homolog 2 DOC-2/DAB2 interacting protein (DAB2IP) activation and dampened AKT/Skp2 signaling.

Conclusions:

  • SMURF1 absence represses ovarian cancer cell proliferation, invasion, and EMT via the DAB2IP/AKT/Skp2 signaling pathway.
  • SMURF1 acts as a suppressor of ovarian cancer progression.
  • SMURF1 presents a potential therapeutic target for ovarian cancer treatment.

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