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Updated: Oct 12, 2025

Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols
Published on: June 6, 2017
Cell cycle progression and transmitotic apoptosis resistance promote escape from extrinsic apoptosis
Nadine Pollak1,2, Aline Lindner1, Dirke Imig3
1Institute of Cell Biology and Immunology, University of Stuttgart, Allmandring 31, 70569 Stuttgart, Germany.
Abstract:
Extrinsic apoptosis relies on TNF-family receptor activation by immune cells or receptor-activating drugs. Here, we monitored cell cycle progression at a resolution of minutes to relate apoptosis kinetics and cell-to-cell heterogeneities in death decisions to cell cycle phases. Interestingly, we found that cells in S phase delay TRAIL receptor-induced death in favour of mitosis, thereby passing on an apoptosis-primed state to their offspring. This translates into two distinct fates, apoptosis execution post mitosis or cell survival from inefficient apoptosis. Transmitotic resistance is linked to Mcl-1 upregulation and its increased accumulation at mitochondria from mid-S phase onwards, which allows cells to pass through mitosis with activated caspase-8, and with cells escaping apoptosis after mitosis sustaining sublethal DNA damage. Antagonizing Mcl-1 suppresses cell cycle-dependent delays in apoptosis, prevents apoptosis-resistant progression through mitosis and averts unwanted survival after apoptosis induction. Cell cycle progression therefore modulates signal transduction during extrinsic apoptosis, with Mcl-1 governing decision making between death, proliferation and survival. Cell cycle progression thus is a crucial process from which cell-to-cell heterogeneities in fates and treatment outcomes emerge in isogenic cell populations during extrinsic apoptosis. This article has an associated First Person interview with the first author of the paper.
Insights
Cells delay death during the cell cycle, particularly in S phase, to favor mitosis. Mcl-1 protein upregulation allows cells to survive apoptosis, influencing treatment outcomes.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Extrinsic apoptosis is triggered by TNF-family receptor activation.
- Understanding cell cycle's role in apoptosis is crucial for cancer therapy.
Purpose of the Study:
- To investigate the relationship between cell cycle progression and apoptosis kinetics.
- To elucidate cell-to-cell heterogeneity in death decisions during extrinsic apoptosis.
Main Methods:
- Minute-by-minute monitoring of cell cycle progression.
- Analysis of TRAIL receptor-induced apoptosis.
- Investigating Mcl-1 protein dynamics.
Main Results:
- Cells in S phase delay apoptosis, favoring mitosis and passing an 'apoptosis-primed' state to daughter cells.
- Transmitotic resistance involves Mcl-1 upregulation, allowing cells to survive mitosis with activated caspase-8.
- Mcl-1 antagonism overcomes cell cycle-dependent apoptosis delays and prevents resistant cell survival.
Conclusions:
- Cell cycle progression modulates extrinsic apoptosis signaling.
- Mcl-1 is a key regulator of cell fate decisions (death, proliferation, survival).
- Cell cycle-driven heterogeneity impacts treatment outcomes in apoptosis induction.
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