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Updated: Aug 16, 2026

Strategies for Tracking Anastasis, A Cell Survival Phenomenon that Reverses Apoptosis
Published on: February 16, 2015
Apoptosis: mechanisms and relevance in cancer
Katrien Vermeulen1, Dirk R Van Bockstaele, Zwi N Berneman
1Faculty of Medicine, Laboratory of Experimental Hematology, Antwerp University Hospital, University of Antwerp, Wilrijkstraat 10, 2650, Edegem, Belgium.
Abstract:
Apoptosis or programmed cell death is a process with typical morphological characteristics including plasma membrane blebbing, cell shrinkage, chromatin condensation and fragmentation. A family of cystein-dependent aspartate-directed proteases, called caspases, is responsible for the proteolytic cleavage of cellular proteins leading to the characteristic apoptotic features, e.g. cleavage of caspase-activated DNase resulting in internucleosomal DNA fragmentation. Currently, two pathways for activating caspases have been studied in detail. One starts with ligation of a death ligand to its transmembrane death receptor, followed by recruitment and activation of caspases in the death-inducing signalling complex. The second pathway involves the participation of mitochondria, which release caspase-activating proteins into the cytosol, thereby forming the apoptosome where caspases will bind and become activated. In addition, two other apoptotic pathways are emerging: endoplasmic reticulum stress-induced apoptosis and caspase-independent apoptosis. Naturally occurring cell death plays a critical role in many normal processes like foetal development and tissue homeostasis. Dysregulation of apoptosis contributes to many diseases, including cancer. On the other hand, apoptosis-regulating proteins also provide targets for drug discovery and new approaches to the treatment of cancer.
Insights
Apoptosis, or programmed cell death, is a vital cellular process regulated by caspases. Understanding apoptosis pathways is crucial for developing cancer treatments.
Area of Science:
- Cell Biology
- Biochemistry
- Molecular Biology
Background:
- Apoptosis, or programmed cell death, is characterized by specific morphological changes.
- Caspases, a family of proteases, execute apoptosis by cleaving cellular proteins.
- Two primary caspase activation pathways involve death receptors and mitochondria.
Purpose of the Study:
- To review the mechanisms of apoptosis, focusing on caspase activation pathways.
- To highlight emerging apoptotic pathways, including ER stress-induced and caspase-independent apoptosis.
- To underscore the role of apoptosis in development, homeostasis, and diseases like cancer.
Main Methods:
- Review of existing literature on apoptosis and caspase activation.
- Discussion of the molecular mechanisms underlying different apoptotic pathways.
- Analysis of the implications of apoptosis dysregulation in disease.
Main Results:
- Caspase activation is central to apoptosis, occurring via death receptor or mitochondrial pathways.
- Endoplasmic reticulum stress and caspase-independent mechanisms represent emerging apoptotic pathways.
- Apoptosis dysregulation is implicated in various diseases, notably cancer.
Conclusions:
- Apoptosis is a critical biological process with complex regulatory mechanisms.
- Targeting apoptosis-regulating proteins offers potential for novel cancer therapies.
- Further research into apoptosis pathways can advance disease treatment strategies.
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