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Updated: Jul 28, 2026

Activation of Apoptosis by Cytoplasmic Microinjection of Cytochrome c
Published on: June 29, 2011
The c-Jun NH(2)-terminal protein kinase/AP-1 pathway is required for efficient apoptosis induced by vinblastine
M Fan1, M E Goodwin, M J Birrer
1Department of Biochemistry and Molecular Biology, University of Arkansas for Medical Sciences, 4301 West Markham Street, Little Rock, AR 72205-7199, USA.
Abstract:
Vinblastine is an important antitumor agent that induces G(2)-M arrest and subsequent apoptosis in a wide variety of cell lines, but the molecular mechanisms that link mitotic arrest and apoptosis are poorly understood. The AP-1 transcription factor has been implicated in many critical cellular processes, including apoptosis, and is a major target of the c-Jun NH(2)-terminal kinase signaling pathway that is activated by vinblastine and other microtubule inhibitors. In this study we sought to determine the role of c-Jun NH(2)-terminal kinase/AP-1 in the response of KB3 carcinoma cells to vinblastine. For this purpose, we generated KB3 cell lines that stably expressed the c-Jun dominant-negative deletional mutant TAM67, which lacks the NH(2)-terminal transactivation domain. KB3-TAM67 cell lines displayed normal growth kinetics and essentially unaltered basal AP-1 activity, but vinblastine-induced phosphorylation of c-Jun and activating transcription factor-2, and AP-1 activation, were strongly inhibited. KB3-TAM67 cell lines arrested normally at G(2)-M in response to vinblastine, but were significantly more resistant to the drug, exhibiting markedly delayed apoptosis and increased overall survival, relative to control cells. To investigate the underlying mechanisms, differential expression of apoptotic regulatory genes was monitored by immunoblot and cDNA microarray analysis. We found that vinblastine treatment caused down-regulation of p53 and its target p21 and up-regulation of tumor necrosis factor alpha, Bak, and several other genes in control but not in KB3-TAM67 cells, identifying these genes as putative targets of vinblastine-inducible AP-1. These results demonstrate that vinblastine-inducible AP-1 plays a destructive, proapoptotic role and may do so by regulating the expression of a specific subset of target genes that promotes efficient apoptotic cell death following mitotic arrest.
Insights
Vinblastine triggers cell cycle arrest and apoptosis, but the underlying mechanisms are unclear. This study reveals that the c-Jun NH(2)-terminal kinase/AP-1 pathway promotes vinblastine-induced apoptosis by regulating key genes, highlighting its crucial role in cancer cell death.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Vinblastine is an antitumor agent causing G(2)-M arrest and apoptosis.
- The molecular link between mitotic arrest and apoptosis is not fully understood.
- The AP-1 transcription factor, regulated by c-Jun NH(2)-terminal kinase (JNK), is involved in apoptosis.
Purpose of the Study:
- To investigate the role of JNK/AP-1 in KB3 carcinoma cell response to vinblastine.
- To determine if JNK/AP-1 signaling influences vinblastine-induced apoptosis.
Main Methods:
- Generated KB3 cell lines expressing a dominant-negative c-Jun mutant (TAM67).
- Assessed vinblastine-induced G(2)-M arrest, apoptosis, and AP-1 activity.
- Analyzed differential gene expression of apoptotic regulators using immunoblot and cDNA microarray.
Main Results:
- KB3-TAM67 cells showed inhibited vinblastine-induced JNK/AP-1 activation but normal G(2)-M arrest.
- These cells were more resistant to vinblastine, with delayed apoptosis and increased survival.
- Vinblastine treatment altered expression of p53, p21, TNF-alpha, and Bak in control cells, but not in TAM67 cells.
Conclusions:
- Vinblastine-inducible AP-1 plays a proapoptotic role in cancer cells.
- AP-1 regulates specific target genes, including p53, p21, TNF-alpha, and Bak, to promote apoptosis after mitotic arrest.
- Targeting the JNK/AP-1 pathway could be a strategy to enhance vinblastine efficacy.
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