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Published on: May 19, 2016
TAp73β-mediated suppression of cell migration requires p57Kip2 control of actin cytoskeleton dynamics
Johanna Rodhe1, Edel Kavanagh, Bertrand Joseph
1Department of Oncology-Pathology, Cancer Centrum Karolinska, Karolinska Institutet, 171 76 Stockholm, Sweden.
Abstract:
The TP73 gene, a member of the p53 family, due to the use of different promoters and alternative splicing, is transcribed into different isoforms with contrasting attributes and which contribute to its functional diversity. Considerable efforts are made to identify the functional diversity of the p73 splicing variants during tumorigenesis. TAp73α and TAp73β isoforms have been shown to differentially regulate cell cycle progression, differentiation and apoptosis. Interestingly, a particular increase in expression of the TAp73 isoform, in favor of the α splicing variant, has been reported in multiple tumour types. Here, we report a distinctive role for TAp73β isoform in the control of cell migration and invasion. In fact, TAp73β- dependent induction of p57(Kip2) expression accounted for inhibitory effects on the actin cytoskeleton dynamics and thereby cancer cell motility. In contrast, TAp73α is not able to induce p57(Kip2) expression, and exhibits a positive effect on actin cytoskeleton dynamics as well as cell migration and invasion. In conclusion, the inhibitory effect on cell migration and invasion of TAp73β would qualify this distinct p73 isoform as tumor suppressor gene. In contrast, the promoting effect of TAp73α on cell motility and invasion strengthens the potential oncogenic activities of this p73 isoform.
Insights
The TP73 gene
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- The TP73 gene, part of the p53 family, generates diverse isoforms through alternative splicing.
- TAp73α and TAp73β isoforms have known roles in cell cycle, differentiation, and apoptosis.
- Increased TAp73α expression is observed in various tumors, suggesting a role in tumorigenesis.
Purpose of the Study:
- To investigate the distinct roles of TAp73β and TAp73α isoforms in cancer cell migration and invasion.
- To elucidate the molecular mechanisms underlying the differential effects of TAp73 isoforms on cell motility.
Main Methods:
- Analysis of TAp73β and TAp73α isoform expression in cancer cells.
- Assessment of cell migration and invasion assays.
- Investigation of downstream targets, including p57(Kip2) and actin cytoskeleton dynamics.
Main Results:
- TAp73β isoform inhibits cancer cell migration and invasion by inducing p57(Kip2) expression, which affects actin cytoskeleton dynamics.
- TAp73α isoform promotes cell migration and invasion, with no induction of p57(Kip2) and a positive effect on actin cytoskeleton dynamics.
Conclusions:
- TAp73β acts as a tumor suppressor by inhibiting cell migration and invasion.
- TAp73α exhibits oncogenic activity by promoting cell motility and invasion, highlighting its role in tumor progression.
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