Related Experiment Videos
ZBP-89 promotes growth arrest through stabilization of p53
1Department of Internal Medicine, University of Michigan, Ann Arbor, Michigan, USA.
Abstract:
Transcription factor p53 can induce growth arrest and/or apoptosis in cells through activation or repression of downstream target genes. Recently, we reported that ZBP-89 cooperates with histone acetyltransferase coactivator p300 in the regulation of p21(waf1), a cyclin-dependent kinase inhibitor whose associated gene is a target gene of p53. Therefore, we examined whether ZBP-89 might also inhibit cell growth by activating p53. In the present study, we demonstrate that elevated levels of ZBP-89 induce growth arrest and apoptosis in human gastrointestinal cell lines. The ZBP-89 protein accumulated within 4 h, and the p53 protein accumulated within 16 h, of serum starvation without changes in p14ARF levels, demonstrating a physiological increase in the cellular levels of these two proteins. Overexpression of ZBP-89 stabilized the p53 protein and enhanced its transcriptional activity through direct protein-protein interactions. The DNA binding and C-terminal domains of p53 and the zinc finger domain of ZBP-89 mediated the interaction. A point mutation in the p53 DNA binding domain, R273H, greatly reduced ZBP-89-mediated stabilization but not their physical interaction. Furthermore, ZBP-89 formed a complex with p53 and MDM2 and therefore did not prevent the MDM2-p53 interaction. However, heterokaryon assays demonstrated that ZBP-89 retained p53 in the nucleus. Collectively, these data indicate that ZBP-89 regulates cell proliferation in part through its ability to directly bind the p53 protein and retard its nuclear export. Our findings further our understanding of how ZBP-89 modulates cell proliferation and reveals a novel mechanism by which the p53 protein is stabilized.
Insights
The transcription factor ZBP-89 stabilizes the p53 protein, inducing growth arrest and apoptosis in gastrointestinal cells by retaining p53 in the nucleus. This interaction reveals a new mechanism for p53 stabilization and cell proliferation regulation.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- Transcription factor p53 regulates cell growth and apoptosis by controlling target genes.
- ZBP-89 is known to cooperate with p300 in regulating p21(waf1), a p53 target gene.
Purpose of the Study:
- To investigate if ZBP-89 inhibits cell growth by activating p53.
- To elucidate the mechanism by which ZBP-89 affects p53 activity and cellular proliferation.
Main Methods:
- Overexpression of ZBP-89 in human gastrointestinal cell lines.
- Western blotting to detect protein accumulation (ZBP-89, p53, p14ARF).
- Protein-protein interaction studies using domain mapping and heterokaryon assays.
Main Results:
- Elevated ZBP-89 levels induced growth arrest and apoptosis.
- ZBP-89 overexpression stabilized p53 protein and enhanced its transcriptional activity.
- ZBP-89 directly binds p53, retaining it in the nucleus and retarding nuclear export.
- ZBP-89 forms a complex with p53 and MDM2 without preventing MDM2-p53 interaction.
Conclusions:
- ZBP-89 regulates cell proliferation via direct interaction with p53, stabilizing it and promoting nuclear retention.
- This study uncovers a novel mechanism for p53 protein stabilization and sheds light on ZBP-89's role in cell proliferation control.