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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.

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.

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