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Identification of Intracellular Signaling Events Induced in Viable Cells by Interaction with Neighboring Cells Undergoing Apoptotic Cell Death
Published on: December 27, 2016
Regulation and interplay of apoptotic and non-apoptotic cell death
1International Radiation Information Centre, Research Institute for Radiation Biology and Medicine, Hiroshima University, Hiroshima, Japan. rkim@hiroshima-u.ac.jp
Abstract:
Various death triggers including DNA damage, oxidative stress, and growth factor deprivation promote the loss of mitochondrial membrane potential, leading to the production of reactive oxidative species (ROS) or enhanced permeability of the mitochondrial membrane, otherwise known as mitochondrial membrane permeabilization, by insertion of Bax/Bak into the outer membrane where it interacts with voltage-dependent anion channel (VDAC)/adenine nucleotide transporter (ANT). MMP leads to the release of small pro-apoptotic molecules, which induce caspase-dependent and -independent apoptotic cell death. The production of ROS due to the loss of mitochondrial membrane potential enhances the permeability of lysosomal membranes, resulting in the release of lysosomal proteases, which contribute to mitochondrial membrane permeabilization and the lysosomal degradation mechanism of autophagic cell death. Although defects in apoptotic and non-apoptotic cell death pathways can be carcinogenic, these pathways are more or less preserved within cancer cells and can therefore influence cell death and mediate resistance to cancer treatment. This paper discusses recent advances in determining the molecular mechanisms behind regulation of apoptotic and non-apoptotic cell death, as well as the interplay between these two processes, which may lead to the development of new strategies by which to enhance the therapeutic effects of chemotherapeutic agents.
Insights
Cell death pathways, including apoptosis and autophagy, are crucial in cancer. Understanding their molecular regulation and interplay can enhance chemotherapy effectiveness against cancer cells.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Mitochondrial membrane potential (MMP) loss is triggered by DNA damage, oxidative stress, and growth factor deprivation.
- MMP loss leads to reactive oxidative species (ROS) production and mitochondrial membrane permeabilization, initiating apoptosis.
- ROS also increases lysosomal membrane permeability, releasing proteases that contribute to MMP and autophagic cell death.
Purpose of the Study:
- To review recent advances in understanding the molecular mechanisms regulating apoptotic and non-apoptotic cell death.
- To explore the interplay between apoptosis and autophagy in cell death.
- To identify potential new strategies for enhancing cancer therapy.
Main Methods:
- Literature review of recent advances in cell death research.
- Analysis of molecular mechanisms regulating apoptosis and autophagy.
- Discussion of the interplay between cell death pathways.
Main Results:
- Defects in cell death pathways can lead to cancer.
- Cancer cells often preserve apoptotic and non-apoptotic pathways, influencing treatment resistance.
- Understanding these pathways offers opportunities for therapeutic intervention.
Conclusions:
- Molecular mechanisms of apoptosis and autophagy are complex and interconnected.
- Targeting these pathways may overcome cancer treatment resistance.
- Further research can lead to novel strategies to improve chemotherapeutic efficacy.
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