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Updated: Jul 8, 2026

Techniques to Induce and Quantify Cellular Senescence
Published on: May 1, 2017
Suppression of human tumor cell proliferation by Smurf2-induced senescence
Hong Zhang1, Yuchin Teng, Yahui Kong
1Department of Cell Biology, University of Massachusetts Medical School, Worcester, Massachusetts 01655, USA. hong.zhang@umassmed.edu
Abstract:
The limitation of proliferative potential in human somatic cells imposed by replicative senescence has been proposed as a mechanism of tumor suppression. The E3 ubiquitin ligase Smurf2 is up-regulated during replicative senescence in response to telomere shortening, and induces senescence when expressed adventitiously in early passage or telomerase-immortalized human fibroblasts. To investigate the generality of Smurf2's control of cell proliferation, we have studied the effects of Smurf2 up-regulation on cell proliferation in early passage human mammary epithelial cells which normally do not show elevated expression of Smurf2 during senescence, and in 16 human cancer cell lines derived from both sarcomas and carcinomas. Here we report that Smurf2 up-regulation induced senescence in a wide variety of human cell types, including highly neoplastic cell lines. Consistent with our previous findings, the ability of Smurf2 to arrest cell proliferation did not require its ubiquitin ligase activity. Furthermore, expression of the cyclin-dependent kinase inhibitor p21 was increased in tumor cells undergoing Smurf2-induced senescence, and such increase occurred independently of the transactivation function of p53. Our results, which reveal a previously unsuspected tumor suppression function for Smurf2-induced senescence, suggest that modulation of Smurf2 action may be a useful strategy for inhibition of cancer cell growth.
Insights
Smurf2, a protein that triggers cellular senescence, demonstrates a tumor suppression function across diverse human cell types, including cancer cells. Its ability to halt proliferation offers a potential strategy for inhibiting cancer growth.
Area of Science:
- Cellular Biology
- Oncology
- Molecular Biology
Background:
- Replicative senescence limits human somatic cell proliferation and acts as a tumor suppressor mechanism.
- The E3 ubiquitin ligase Smurf2 is upregulated during senescence and can induce it when overexpressed.
Purpose of the Study:
- To investigate the broader role of Smurf2 in controlling cell proliferation across various human cell types, including cancer cells.
- To determine if Smurf2's senescence-inducing capability is general and if it functions independently of its ligase activity.
Main Methods:
- Studied Smurf2 upregulation effects on cell proliferation in early passage human mammary epithelial cells and 16 human cancer cell lines.
- Assessed Smurf2's ubiquitin ligase activity requirement for proliferation arrest.
- Examined p21 expression and p53's role in Smurf2-induced senescence in tumor cells.
Main Results:
- Smurf2 upregulation induced senescence in a wide array of human cell types, including highly neoplastic cancer cell lines.
- Smurf2's proliferation-arresting ability did not depend on its ubiquitin ligase activity.
- Smurf2-induced senescence increased p21 expression in tumor cells, independent of p53's transactivation function.
Conclusions:
- Smurf2-induced senescence possesses a previously unrecognized tumor suppression function.
- Modulating Smurf2 activity presents a potential therapeutic strategy for inhibiting cancer cell growth.
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