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Updated: Jul 12, 2026

Techniques to Induce and Quantify Cellular Senescence
Published on: May 1, 2017
CDK4/6 inhibition induces a senescence-associated secretory phenotype via delayed NF-κB activation
Joanna Lan-Hing Yeung1, Justin Rendleman1, Lauren Anderson Westcott1
1Laboratory of Genome Architecture and Dynamics, The Rockefeller University, New York, NY, USA.
Abstract:
Cellular senescence consists of regulated phenotypes associated with permanent exit from the cell cycle in response to stressors such as genomic instability. The consequences of senescence go beyond individual cells because of the senescence-associated secretory phenotype (SASP), which can induce inflammation in neighboring cells. Some cancers respond to CDK4/6 inhibitors (CDK4/6i) with a senescence-like phenotype in the absence of extensive DNA damage. We asked how the SASP and the transcriptional regulatory profile triggered by CDK4/6i-driven arrest compare with the canonical NF-κB-regulated SASP triggered by DNA damage. We profiled the dynamics of transcriptional regulation in response to the CDK4/6i, palbociclib, and the DNA-damaging agent, doxorubicin. We found that up-regulation of NF-κB-driven SASP genes was shared across both drugs, although delayed in CDK4/6i, coinciding with slower enhancer activation and epigenetic changes. ATM/ATR inhibition did not affect CDK4/6i-induced NF-κB nuclear localization, suggesting an alternative upstream activator. Inhibiting NF-κB suppressed the expression of SASP genes without reversing stable arrest, pointing to SASP manipulation as a potential therapeutic strategy and providing insights into controversies regarding cell cycle arrest-driven SASP.
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