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Updated: Feb 28, 2026

Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
Published on: June 29, 2011
VDAC1 as a Player in Mitochondria-Mediated Apoptosis and Target for Modulating Apoptosis
Varda Shoshan-Barmatz1, Yakov Krelin1, Quan Chen2
1Department of Life Sciences and the National Institute for Biotechnology in the Negev, Ben-Gurion University of the Negev, Beer-Sheva 84105. Israel.
Background:
The voltage-dependent anion channel 1 (VDAC1), an outer mitochondria membrane protein, functions as a mitochondrial governor, controlling transport of metabolites in and out of the mitochondria and energy production, while also coordinating glycolysis and oxidative phosphorylation. VDAC1 plays a key role in mitochondria-mediated apoptosis by functioning in the release of apoptotic proteins located in the inter-membranal space and due to its association with pro- and anti-apoptotic proteins. Thus, VDAC1 is considered as a promising target for controlling apoptosis.
Methods:
We reviewed published data presenting accumulated evidence suggesting that VDAC1 oligomerization represents an important step in the intrinsic mitochondria-mediated apoptosis pathway.
Results:
The published data support the proposal that VDAC1 oligomerization leads to the formation of a large pore that allows the release of pro-apoptotic proteins to the cytosol, thereby, activation of apoptosis. Evidence for the relationship between VDAC1 expression levels and induction of apoptosis are presented. This includes the finding that almost all apoptosis stimuli induce VDAC1 over-expression shifting VDAC1 from a monomeric to an oligomeric assembly, corresponding to the Cyto c release channel. Compounds or conditions inducing VDAC1 over-expression, VDAC1 oligomerization and apoptosis are presented. Likewise, VDAC1-interacting molecules, that inhibit both VDAC1 oligomerization and apoptosis are also presented.
Conclusion:
This review highlights the findings about VDAC1 oligomerization as a potential target for controlling apoptosis, specifically using drugs to induce apoptotic cell death in cancer and inhibit apoptosis in neurodegenerative diseases, as well as possible VDAC1-based therapeutic applications.
Insights
Voltage-dependent anion channel 1 (VDAC1) oligomerization triggers apoptosis by forming pores that release proteins. Targeting VDAC1 offers therapeutic potential for cancer and neurodegenerative diseases.
Area of Science:
- Mitochondrial biology
- Cell death pathways
Background:
- Voltage-dependent anion channel 1 (VDAC1) regulates mitochondrial transport and energy production.
- VDAC1 is crucial in mitochondria-mediated apoptosis, facilitating the release of apoptotic proteins.
Purpose of the Study:
- To review evidence on VDAC1 oligomerization in intrinsic apoptosis.
- To highlight VDAC1 as a therapeutic target for apoptosis modulation.
Main Methods:
- Review of published data on VDAC1 oligomerization and apoptosis.
- Analysis of VDAC1 expression, oligomerization, and interaction studies.
Main Results:
- VDAC1 oligomerization forms pores, releasing pro-apoptotic proteins and activating apoptosis.
- Apoptosis stimuli often induce VDAC1 overexpression and oligomerization.
- Specific compounds and VDAC1-interacting molecules modulate VDAC1 oligomerization and apoptosis.
Conclusions:
- VDAC1 oligomerization is a key step in apoptosis.
- Targeting VDAC1 offers therapeutic strategies for cancer (inducing apoptosis) and neurodegenerative diseases (inhibiting apoptosis).
- VDAC1-based therapies show promise for various conditions.
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