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WT1-p53 interactions in insulin-like growth factor-I receptor gene regulation
Gila Idelman1, Tova Glaser, Charles T Roberts
1Department of Clinical Biochemistry, Sackler School of Medicine, Tel Aviv University, Tel Aviv 69978, Israel.
Abstract:
The insulin-like growth factor-I receptor (IGF-IR) plays a critical role in transformation. The expression of the IGF-IR gene is negatively regulated by a number of transcription factors, including the WT1 and p53 tumor suppressors. Previous studies have suggested both physical and functional interactions between the WT1 and p53 proteins. The potential functional interactions between WT1 and p53 in control of IGF-IR promoter activity were addressed by transient coexpression of vectors encoding different isoforms of WT1, together with IGF-IR promoter-luciferase reporter constructs, in p53-null osteosarcoma-derived Saos-2 cells, wild-type p53-expressing kidney tumor-derived G401 cells, and mutant p53-expressing, rhabdomyosarcoma-derived RD cells. Similar studies were also performed to compare p53-expressing Balb/c-3T3 and clonally derived p53-null, (10)1 fibroblasts and the colorectal cancer cell line HCT116 +/+, which expresses a wild-type p53 gene, and its HCT116 -/- derivative, in which the p53 gene has been disrupted by homologous recombination. WT1 splice variants lacking a KTS insert between zinc fingers 3 and 4 suppressed IGF-IR promoter activity in the absence of p53 or in the presence of wild-type p53. WT1 variants that contain the KTS insert are impaired in their ability to bind to the IGF-IR promoter and are unable to suppress IGF-IR promoter. In the presence of mutant p53, WT1 cannot repress the IGF-IR promoter. Coimmunoprecipitation experiments showed that p53 and WT1 physically interact, whereas electrophoretic mobility shift assay studies revealed that p53 modulates the ability of WT1 to bind to the IGF-IR promoter. In summary, the transcriptional activity of WT1 proteins and their ability to function as tumor suppressors or oncogenes depends on the cellular status of p53.
Insights
WT1 tumor suppressor activity depends on p53. WT1 variants lacking KTS suppress IGF-IR promoter activity, but this repression is blocked by mutant p53, indicating p53
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- The insulin-like growth factor-I receptor (IGF-IR) is crucial for cell transformation.
- WT1 and p53 are tumor suppressors that negatively regulate IGF-IR gene expression.
- WT1 and p53 proteins are known to interact physically and functionally.
Purpose of the Study:
- To investigate the functional interactions between WT1 and p53 in regulating IGF-IR promoter activity.
- To determine how different WT1 isoforms and p53 status affect IGF-IR gene expression.
Main Methods:
- Transient coexpression of WT1 isoforms and IGF-IR promoter-luciferase constructs in various cancer cell lines with different p53 statuses (null, wild-type, mutant).
- Coimmunoprecipitation assays to confirm physical interaction between WT1 and p53.
- Electrophoretic mobility shift assays (EMSA) to assess WT1 binding to the IGF-IR promoter and p53's modulation of this binding.
Main Results:
- WT1 splice variants lacking a KTS insert suppressed IGF-IR promoter activity, particularly in the absence or presence of wild-type p53.
- WT1 variants with the KTS insert showed impaired binding to the IGF-IR promoter and could not suppress its activity.
- Mutant p53 abolished WT1's ability to repress the IGF-IR promoter, despite physical interaction between WT1 and p53.
- p53 modulates WT1's binding to the IGF-IR promoter.
Conclusions:
- The transcriptional activity of WT1, and its role as a tumor suppressor or oncogene, is contingent upon the cellular p53 status.
- WT1's interaction with p53 is critical for its regulatory function on IGF-IR, with mutant p53 disrupting this tumor-suppressive mechanism.