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Updated: Jan 30, 2026

Assessment of Ovarian Cancer Spheroid Attachment and Invasion of Mesothelial Cells in Real Time
Published on: May 20, 2014
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.
Abstract:
SMAD ubiquitination regulatory factor 1 (SMURF1) has been described as a tumor suppressor in multiple aggressive cancers. Nevertheless, the potential role of SMURF1 in ovarian cancer invasion and epithelial-to-mesenchymal transition (EMT) remains unclear. The aim of this study was to evaluate the efficacy of SMURF1 on tumor migration and EMT and elucidate the underlying molecular mechanism in ovarian carcinoma. We found elevated SMURF1 in several ovarian cancer cells in both messenger RNA and protein. Additionally, silencing SMURF1 apparently repressed cell proliferation and invasion capacity of SKOV3 and A2780 cells and markedly attenuated expression of linked proteins such as proliferating cellnuclear antigen, matrix metalloproteinase (MMP)-2, and MMP-9. Furthermore, depletion of SMURF1 dramatically impeded EMT progress by modulating EMT biomarkers, with a notable increase in E-cadherin expression accompanied by the decrease in N-cadherin and vimentin in both SKOV3 and A2780 cells. Interestingly, elimination of SMURF1 led to disabled homolog 2 DOC-2/DAB2 interacting protein (DAB2IP) activation and dampened AKT/Skp2 signaling. Most important, depleted of DAB2IP or treatment with the AKT agonist 740Y-P effectively abolished the suppressive effects of SMURF1 knockout on cell invasiveness and EMT process. Taken all data together, these findings demonstrated that the absence of SMURF1 repressed cell proliferation, invasive capability, and EMT process in ovarian cancer through DAB2IP/AKT/Skp2 signaling loops, suggesting that SMURF1 may serve as a new potential therapeutic agent for ovarian cancer.
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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