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Updated: Mar 24, 2026

Studying TGF-β Signaling and TGF-β-induced Epithelial-to-mesenchymal Transition in Breast Cancer and Normal Cells
Published on: October 27, 2020
TGF-β activates APC through Cdh1 binding for Cks1 and Skp2 proteasomal destruction stabilizing p27kip1 for normal
Savvas C Pavlides1,2, Jon Lecanda1,2, Julien Daubriac1,2
1a Department of Medicine , New York University School of Medicine Langone Medical Center , New York , NY , USA.
Abstract:
We previously reported that aberrant TGF-β/Smad2/3 signaling in endometrial cancer (ECA) leads to continuous ubiquitylation of p27(kip1)(p27) by the E3 ligase SCF-Skp2/Cks1 causing its degradation, as a putative mechanism involved in the pathogenesis of this cancer. In contrast, normal intact TGF-β signaling prevents degradation of nuclear p27 by SCF-Skp2/Cks1 thereby accumulating p27 to block Cdk2 for growth arrest. Here we show that in ECA cell lines and normal primary endometrial epithelial cells, TGF-β increases Cdh1 and its binding to APC/C to form the E3 ligase complex that ubiquitylates Cks1 and Skp2 prompting their proteasomal degradation and thus, leaving p27 intact. Knocking-down Cdh1 in ECA cell lines increased Skp2/Cks1 E3 ligase activity, completely diminished nuclear and cytoplasmic p27, and obviated TGF-β-mediated inhibition of proliferation. Protein synthesis was not required for TGF-β-induced increase in nuclear p27 and decrease in Cks1 and Skp2. Moreover, half-lives of Cks1 and Skp2 were extended in the Cdh1-depleted cells. These results suggest that the levels of p27, Skp2 and Cks1 are strongly or solely regulated by proteasomal degradation. Finally, an inverse relationship of low p27 and high Cks1 in the nucleus was shown in patients in normal proliferative endometrium and grade I-III ECAs whereas differentiated secretory endometrium showed the reverse. These studies implicate Cdh1 as the master regulator of TGF-β-induced preservation of p27 tumor suppressor activity. Thus, Cdh1 is a potential therapeutic target for ECA and other human cancers showing an inverse relationship between Cks1/Skp2 and p27 and/or dysregulated TGF-β signaling.
Insights
Transforming growth factor-beta (TGF-β) signaling regulates endometrial cancer (ECA) by controlling p27 degradation. Cdh1 stabilizes p27 by degrading Skp2/Cks1, suggesting Cdh1 as a therapeutic target for ECA.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Aberrant transforming growth factor-beta (TGF-β) signaling in endometrial cancer (ECA) promotes p27 degradation via SCF-Skp2/Cks1.
- Intact TGF-β signaling normally stabilizes nuclear p27, inhibiting cell proliferation by blocking Cdk2.
Purpose of the Study:
- To investigate the role of Cdh1 in TGF-β-mediated regulation of p27 stability in endometrial cancer.
- To elucidate the mechanism by which TGF-β signaling influences the degradation of Skp2 and Cks1.
Main Methods:
- Utilized ECA cell lines and primary endometrial epithelial cells.
- Performed Cdh1 knockdown experiments.
- Assessed protein levels, ubiquitylation, and degradation rates of p27, Skp2, and Cks1.
- Analyzed patient samples for protein expression correlations.
Main Results:
- TGF-β increases Cdh1-APC/C complex formation, leading to Skp2 and Cks1 ubiquitylation and proteasomal degradation.
- Cdh1 knockdown in ECA cells diminishes p27 levels, enhances Skp2/Cks1 activity, and abrogates TGF-β-mediated growth inhibition.
- Half-lives of Skp2 and Cks1 are extended in Cdh1-depleted cells, indicating proteasomal degradation as the primary regulatory mechanism.
- An inverse correlation between nuclear p27 and Cks1 was observed in normal endometrium and ECA tissues.
Conclusions:
- Cdh1 acts as a master regulator in TGF-β-induced p27 stabilization, crucial for tumor suppressor activity.
- Cdh1 targets Skp2 and Cks1 for degradation, thereby preventing p27 destruction.
- Cdh1 represents a potential therapeutic target for ECA and other cancers with dysregulated TGF-β signaling and inverse p27/Skp2/Cks1 expression.
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