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Updated: Jul 5, 2025

Examining BCL-2 Family Function with Large Unilamellar Vesicles
Published on: October 5, 2012
LINC complex protein nesprin-2 has pro-apoptotic activity via Bcl-2 family proteins
Liora Lindenboim1, Hila Zohar1, Gregg G Gundersen2
1Department of Neurobiology, School of Neurobiology, Biochemistry and Biophysics, George S. Wise Faculty of Life Sciences, Tel Aviv University, Tel Aviv, 69978, Israel.
Abstract:
The apoptotic intrinsic pathway is initiated by perforation of the mitochondrial outer membrane by the effector pro-apoptotic proteins of the Bcl-2 family, Bax and Bak. Bax and Bak need to be activated, a process facilitated by the action of BH3-only pro-apoptotic members of the Bcl-2 family. The latter either directly activates the effector proteins or antagonizes the action of pro-survival Bcl-2 family members such as Bcl-xL. The nuclear envelope is a known target of the apoptotic machinery; however, it may also act as mediator of apoptosis. We showed previously that the nuclear envelope protein nesprin-2, a component of the linker of nucleoskeleton and cytoskeleton (LINC) complex, can bind to Bax in close proximity to the mitochondria and that the binding increases in apoptotic cells. We now show that depleting nesprin-2 inhibits the apoptotic mitochondrial pathway as measured by Bax and Bak activation and cytochrome c release. This survival effect was Bcl-xL-dependent. Nesprin-2 depletion also inhibited spontaneous exposure of the N-terminus of Bak in cells lacking Bcl-xL and increased the presence of Bcl-xL and Bax in the mitochondria. These results indicate that nesprin-2 promotes Bak activation and regulates mitochondrial translocation/retrotranslocation of Bcl-2 family proteins. Our findings demonstrate a new apoptotic pathway whereby the nuclear envelope, via nesprin-2, regulates apoptosis.
Insights
Nesprin-2, a nuclear envelope protein, promotes apoptosis by regulating the activation and mitochondrial localization of key proteins like Bax and Bak. Its depletion inhibits this cell death pathway, revealing a novel role for the nuclear envelope in apoptosis regulation.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- The intrinsic apoptotic pathway involves mitochondrial outer membrane permeabilization by effector proteins Bax and Bak.
- BH3-only proteins activate effector proteins or antagonize pro-survival Bcl-2 members.
- The nuclear envelope, a target in apoptosis, may also mediate cell death.
Purpose of the Study:
- To investigate the role of the nuclear envelope protein nesprin-2 in regulating the intrinsic apoptotic pathway.
- To determine if nesprin-2 influences the activation and mitochondrial localization of Bax and Bak.
Main Methods:
- Depletion of nesprin-2 using specific techniques.
- Assays to measure Bax and Bak activation.
- Analysis of cytochrome c release.
- Mitochondrial protein localization studies.
Main Results:
- Nesprin-2 depletion inhibited Bax and Bak activation and cytochrome c release, indicating reduced apoptosis.
- This survival effect was dependent on the pro-survival protein Bcl-xL.
- Nesprin-2 depletion affected Bak N-terminal exposure and altered Bcl-xL and Bax mitochondrial localization.
Conclusions:
- Nesprin-2 promotes Bak activation and regulates the mitochondrial translocation of Bcl-2 family proteins.
- The nuclear envelope, through nesprin-2, plays a novel regulatory role in the intrinsic apoptotic pathway.
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