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Updated: Jul 3, 2026

Examining BCL-2 Family Function with Large Unilamellar Vesicles
Published on: October 5, 2012
Key role for Bak activation and Bak-Bax interaction in the apoptotic response to vinblastine
Meenakshi Upreti1, Rong Chu, Elena Galitovskaya
1Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, Mail Slot 516, 4301 West Markham Street, Little Rock, AR 72205-7199, USA.
Abstract:
Microtubule inhibitors such as vinblastine cause mitotic arrest and subsequent apoptosis through the intrinsic mitochondrial pathway. However, although Bcl-2 family proteins have been implicated as distal mediators, their precise role is largely unknown. In this study, we investigated the role of Bak in vinblastine-induced apoptosis. Bak was mainly monomeric in untreated KB-3 cells, and multimers corresponding to dimer, trimer, and higher oligomers were observed after vinblastine treatment. The oligomeric Bak species were strongly diminished in cells stably overexpressing Bcl-xL. Immunoprecipitation with a conformation-dependent Bak antibody revealed that vinblastine induced Bak activation. Reciprocal immunoprecipitations indicated that vinblastine induced the interaction of active Bak with active Bax. Furthermore, Bcl-xL overexpression prevented Bak and Bax interaction and strongly inhibited apoptosis, whereas Bcl-2 overexpression did not prevent Bak-Bax interaction and only weakly inhibited apoptosis. The relative contributions of Bak and Bax were investigated using fibroblasts deficient in one or both of these proteins; double knockouts were highly resistant compared with single knockouts, with vinblastine sensitivities in the order of Bak(+)/Bax(+) > Bak(+)/Bax(-) > Bak(-)/Bax(+) > Bak(-)/Bax(-). These results highlight Bak as a key mediator of vinblastine-induced apoptosis and show for the first time activation and oligomerization of Bak by an antimitotic agent. In addition, our results suggest that the interaction of the activated forms of Bak and Bax represents a key distal step in the apoptotic response to this important chemotherapeutic drug.
Insights
Vinblastine triggers apoptosis by activating Bak, a key protein in the intrinsic mitochondrial pathway. Bak then interacts with Bax, promoting cell death, a process inhibited by Bcl-xL.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Microtubule inhibitors like vinblastine induce apoptosis via the intrinsic mitochondrial pathway.
- Bcl-2 family proteins are implicated in apoptosis, but their specific roles are unclear.
Purpose of the Study:
- To investigate the role of Bak in vinblastine-induced apoptosis.
- To elucidate the mechanism of Bak activation and its interaction with Bax.
Main Methods:
- Utilized KB-3 cells and fibroblasts deficient in Bak and/or Bax.
- Employed immunoprecipitation with a conformation-dependent Bak antibody.
- Assessed vinblastine sensitivity in knockout cell lines.
Main Results:
- Vinblastine treatment induced Bak activation, oligomerization, and interaction with Bax.
- Bcl-xL overexpression inhibited Bak-Bax interaction and apoptosis.
- Cells lacking both Bak and Bax were highly resistant to vinblastine.
Conclusions:
- Bak is a critical mediator of vinblastine-induced apoptosis.
- The interaction of activated Bak and Bax is a key step in this apoptotic response.
- Bak activation and oligomerization by antimitotic agents are demonstrated for the first time.
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