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Published on: October 28, 2019
Roscovitine-treated HeLa cells finalize autophagy later than apoptosis by downregulating Bcl‑2
Ajda Coker-Gurkan1, Elif Damla Arisan1, Pinar Obakan1
1Department of Molecular Biology and Genetics, Istanbul Kultur University, Istanbul 34156, Turkey.
Abstract:
The cell cycle is tightly regulated by the family of cyclin-dependent kinases (CDKs). CDKs act as regulatory factors on serine and threonine residues by phosphorylating their substrates and cyclins. CDK‑targeting drugs have previously demonstrated promising effects as cancer therapeutics both in vitro and in vivo. Roscovitine, a purine‑derivative and specific CDK inhibitor, has been demonstrated to arrest the cell cycle and induce apoptosis in a number of different cancer cell lines, including HeLa cervical cancer cells. In the present study, roscovitine was able to decrease both the cell viability and cell survival as well as induce apoptosis in a dose‑dependent manner in HeLa cells by modulating the mitochondrial membrane potential. The decrease of anti‑apoptotic B-cell lymphoma 2 (Bcl‑2) and Bcl-2 extra large protein expression was accompanied by the increase in pro‑apoptotic Bcl-2-associated X protein and P53-upregulated modulator of apoptosis expression. The marked decrease in Bcl‑2 following exposure to roscovitine (20 µM) for 48 h prompted us to determine the autophagic regulation. The outcome revealed that roscovitine triggered Beclin‑1 downregulation and microtubule-associated light chain 3 cleavage starting from 12 h of incubation. Another biomarker of autophagy, p62, a crucial protein for autophagic vacuole formation, was diminished following 48 h. In addition, monodansyl cadaverin staining of autophagosomes also confirmed the autophagic regulation by roscovitine treatment. The expression levels of different Bcl‑2 family members determined whether apoptosis or autophagy were induced following incubation with roscovitine for different time periods. Downregulation of pro‑apoptotic Bcl‑2 family members indicated induction of apoptosis, while the downregulation of anti‑apoptotic Bcl‑2 family members rapidly induced autophagosome formation in HeLa cells.
Insights
Roscovitine, a cyclin-dependent kinase inhibitor, reduces HeLa cancer cell viability and survival. It induces apoptosis by altering Bcl-2 family proteins and triggers autophagy via Beclin-1 and p62 modulation.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Cyclin-dependent kinases (CDKs) regulate the cell cycle and are crucial targets for cancer therapeutics.
- CDK inhibitors, like roscovitine, show promise in cancer treatment by inducing cell cycle arrest and apoptosis.
Purpose of the Study:
- To investigate the effects of roscovitine on HeLa cervical cancer cells.
- To elucidate the mechanisms underlying roscovitine-induced cell death, focusing on apoptosis and autophagy.
Main Methods:
- Dose-dependent treatment of HeLa cells with roscovitine.
- Assessment of cell viability, apoptosis, and mitochondrial membrane potential.
- Analysis of Bcl-2 family protein expression (Bcl-2, Bax, MOAP-1).
- Evaluation of autophagy markers (Beclin-1, LC3, p62) and autophagosome formation.
Main Results:
- Roscovitine decreased HeLa cell viability, survival, and induced apoptosis in a dose-dependent manner.
- Apoptosis induction involved modulation of the mitochondrial membrane potential and altered expression of Bcl-2 family proteins.
- Roscovitine triggered autophagy, evidenced by Beclin-1 downregulation, LC3 cleavage, p62 diminution, and increased autophagosome formation.
- The balance of Bcl-2 family proteins determined the induction of apoptosis versus autophagy.
Conclusions:
- Roscovitine effectively reduces HeLa cell viability and induces apoptosis through mitochondrial pathways.
- Roscovitine also triggers an autophagic response in HeLa cells, regulated by specific proteins.
- The study highlights the dual role of roscovitine in inducing apoptosis and autophagy, offering insights into its anti-cancer mechanisms.
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