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Updated: Jan 22, 2026

Induction and Validation of Cellular Senescence in Primary Human Cells
Published on: June 20, 2018
The Kindlin2-p53-SerpinB2 signaling axis is required for cellular senescence in breast cancer
Khalid Sossey-Alaoui1,2, Elzbieta Pluskota3, Dorota Szpak3
1Department of Cardiovascular & Metabolic Sciences, Lerner Research Institute, Cleveland Clinic, Cleveland, OH, USA. kxs586@case.edu.
Abstract:
In cancer, cellular senescence is a complex process that leads to inhibition of proliferation of cells that may develop a neoplastic phenotype. A plethora of signaling pathways, when dysregulated, have been shown to elicit a senescence response. Two well-known tumor suppressor pathways, controlled by the p53 and retinoblastoma proteins, have been implicated in maintaining the cellular senescence phenotype. Kindlin-2, a member of an actin cytoskeleton organizing and integrin activator proteins, has been shown to play a key role in the regulation of several hallmarks of several cancers, including breast cancer (BC). The molecular mechanisms whereby Kindlin-2 regulates cellular senescence in BC tumors remains largely unknown. Here we show that Kindlin-2 regulates cellular senescence in part through its interaction with p53, whereby it regulates the expression of the p53-responsive genes; i.e., SerpinB2 and p21, during the induction of senescence. Our data show that knockout of Kindlin-2 via CRISPR/Cas9 in several BC cell lines significantly increases expression levels of both SerpinB2 and p21 resulting in the activation of hallmarks of cellular senescence. Mechanistically, interaction between Kindlin-2 and p53 at the promotor level is critical for the regulated expression of SerpinB2 and p21. These findings identify a previously unknown Kindlin-2/p53/SerpinB2 signaling axis that regulates cellular senescence and intervention in this axis may serve as a new therapeutic window for BCs treatment.
Insights
Kindlin-2 regulates cellular senescence in breast cancer (BC) by interacting with p53, controlling p53-responsive genes SerpinB2 and p21. This discovery reveals a new therapeutic target for BC treatment.
Area of Science:
- Oncology
- Cell Biology
- Molecular Biology
Background:
- Cellular senescence inhibits proliferation in neoplastic cells.
- p53 and retinoblastoma proteins are key tumor suppressors in senescence.
- Kindlin-2 impacts cancer hallmarks, but its role in BC senescence is unclear.
Purpose of the Study:
- To elucidate the molecular mechanisms of Kindlin-2 in regulating cellular senescence in breast cancer (BC).
- To investigate the interaction between Kindlin-2 and p53 in BC senescence.
Main Methods:
- CRISPR/Cas9 gene editing to knockout Kindlin-2 in BC cell lines.
- Analysis of gene expression for p53-responsive genes (SerpinB2, p21).
- Investigated Kindlin-2 and p53 interaction at the promoter level.
Main Results:
- Kindlin-2 knockout significantly increased SerpinB2 and p21 expression in BC cells.
- Increased gene expression activated hallmarks of cellular senescence.
- Kindlin-2 interaction with p53 at the promoter is crucial for regulating SerpinB2 and p21.
Conclusions:
- Kindlin-2 regulates BC cellular senescence via interaction with p53.
- A novel Kindlin-2/p53/SerpinB2 signaling axis controlling senescence was identified.
- Targeting this axis may offer new therapeutic strategies for breast cancer.
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