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Updated: Jun 30, 2026

Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols
Published on: June 6, 2017
Cooperative effect of p21Cip1/WAF-1 and 14-3-3sigma on cell cycle arrest and apoptosis induction by p14ARF
P G Hemmati1, G Normand, B Gillissen
1Department of Hematology, Oncology and Tumor Immunology, University Medical Center Charité, Campus Berlin-Buch, Germany.
Abstract:
P14(ARF) (p19(ARF) in the mouse) plays a central role in the regulation of cellular proliferation. Although the capacity of p14(ARF) to induce a cell cycle arrest in G1 phase depends on a functional p53/p21-signaling axis, the G2 arrest triggered by p14(ARF) is p53/p21-independent. Using isogeneic HCT116 cells either wild-type or homozygously deleted for p21, 14-3-3sigma or both, we further investigated the cooperative effect of p21 and 14-3-3sigma on cell cycle regulation and apoptosis induction by p14(ARF). In contrast to DNA damage, which induces mitotic catastrophe in 14-3-3sigma-deficient cells, we show here that the expression of p14(ARF) triggers apoptotic cell death, as evidenced by nuclear DNA fragmentation and induction of pan-caspase activities, irrespective of the presence or absence of 14-3-3sigma. The activation of the intrinsic mitochondrial apoptosis pathway by p14(ARF) was confirmed by cytochrome c release from mitochondria and induction of caspase-9- (LEHDase) and caspase-3/7-like (DEVDase) activities. Moreover, 14-3-3sigma/p21 double-deficient cells were exceedingly sensitive to apoptosis induction by p14(ARF) as compared to wild-type cells or cells lacking either gene alone. Notably, p14(ARF)-induced apoptosis was preceded by an arrest in the G2 phase of cell cycle, which coincided with downregulation of cdc2 (cdk1) protein expression and lack of its nuclear localization. This indicates that p14(ARF) impairs mitotic entry by targeting the distal DNA damage-signaling pathway and induces apoptotic cell death, rather than mitotic catastrophe, out of a transient G2 arrest. Furthermore, our data delineate that the disruption of G2/M cell cycle checkpoint control critically determines the sensitivity of the cell toward p14(ARF)-induced mitochondrial apoptosis.
Insights
The p14(ARF) protein triggers apoptosis via the mitochondrial pathway, independent of p53/p21. Its disruption of G2/M checkpoint control enhances sensitivity to this p14(ARF)-induced apoptosis.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- p14(ARF) regulates cellular proliferation and cell cycle arrest.
- p14(ARF)-induced G1 arrest requires p53/p21, but G2 arrest is independent.
- The roles of p21 and 14-3-3sigma in p14(ARF) signaling are not fully understood.
Purpose of the Study:
- Investigate the cooperative effects of p21 and 14-3-3sigma on p14(ARF)-mediated cell cycle regulation.
- Determine the mechanism of cell death induced by p14(ARF) in the absence of p21 and/or 14-3-3sigma.
- Elucidate the relationship between G2/M checkpoint control and p14(ARF)-induced apoptosis.
Main Methods:
- Utilized isogeneic HCT116 cells with varying deletions of p21 and 14-3-3sigma.
- Assessed cell cycle arrest, apoptosis (DNA fragmentation, caspase activity), and mitochondrial pathway activation (cytochrome c release).
- Examined cdc2 (cdk1) protein expression and localization during p14(ARF) treatment.
Main Results:
- p14(ARF) induces apoptotic cell death, not mitotic catastrophe, irrespective of 14-3-3sigma.
- p14(ARF) activates the intrinsic mitochondrial apoptosis pathway, confirmed by caspase activation and cytochrome c release.
- Cells deficient in both p21 and 14-3-3sigma showed heightened sensitivity to p14(ARF)-induced apoptosis.
- p14(ARF) treatment led to G2 arrest, decreased cdc2 protein, and impaired nuclear localization, preventing mitotic entry.
Conclusions:
- p14(ARF) impairs mitotic entry by targeting the G2/M checkpoint, leading to apoptosis via the mitochondrial pathway.
- The disruption of G2/M checkpoint control is critical for cellular sensitivity to p14(ARF)-induced mitochondrial apoptosis.
- p14(ARF) induces apoptosis rather than mitotic catastrophe, distinguishing its mechanism from DNA damage responses.
Related Concept Videos
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DNA Damage Can Stall the Cell Cycle
Inhibition of Cdk Activity
Inhibition of CDK Activity
Negative Regulator Molecules
Abnormal Proliferation

