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An integrated genome screen identifies the Wnt signaling pathway as a major target of WT1
Marianne K-H Kim1, Thomas J McGarry, Pilib O Broin
1Division of Hematology/Oncology, Northwestern University Feinberg School of Medicine, Chicago, IL 60611, USA.
Abstract:
WT1, a critical regulator of kidney development, is a tumor suppressor for nephroblastoma but in some contexts functions as an oncogene. A limited number of direct transcriptional targets of WT1 have been identified to explain its complex roles in tumorigenesis and organogenesis. In this study we performed genome-wide screening for direct WT1 targets, using a combination of ChIP-ChIP and expression arrays. Promoter regions bound by WT1 were highly G-rich and resembled the sites for a number of other widely expressed transcription factors such as SP1, MAZ, and ZNF219. Genes directly regulated by WT1 were implicated in MAPK signaling, axon guidance, and Wnt pathways. Among directly bound and regulated genes by WT1, nine were identified in the Wnt signaling pathway, suggesting that WT1 modulates a subset of Wnt components and responsive genes by direct binding. To prove the biological importance of the interplay between WT1 and Wnt signaling, we showed that WT1 blocked the ability of Wnt8 to induce a secondary body axis during Xenopus embryonic development. WT1 inhibited TCF-mediated transcription activated by Wnt ligand, wild type and mutant, stabilized beta-catenin by preventing TCF4 loading onto a promoter. This was neither due to direct binding of WT1 to the TCF binding site nor to interaction between WT1 and TCF4, but by competition of WT1 and TCF4 for CBP. WT1 interference with Wnt signaling represents an important mode of its action relevant to the suppression of tumor growth and guidance of development.
Insights
Wilms tumor 1 (WT1) regulates kidney development and can act as a tumor suppressor or oncogene. This study identified WT1
Area of Science:
- Molecular Biology
- Developmental Biology
- Cancer Biology
Background:
- The Wilms tumor 1 (WT1) gene is crucial for kidney development and has dual roles in tumorigenesis, acting as both a tumor suppressor and an oncogene.
- Understanding WT1's direct transcriptional targets is key to elucidating its complex functions in organogenesis and cancer.
Purpose of the Study:
- To perform a genome-wide screen for direct WT1 transcriptional targets.
- To investigate the role of WT1 in modulating Wnt signaling pathways.
- To elucidate the mechanism by which WT1 interferes with Wnt signaling.
Main Methods:
- Genome-wide screening using ChIP-ChIP and expression arrays to identify direct WT1 targets.
- Analysis of promoter regions for WT1 binding sites.
- Functional assays in Xenopus embryos to assess WT1's effect on Wnt signaling.
Main Results:
- Identified numerous direct WT1 targets involved in MAPK signaling, axon guidance, and Wnt pathways.
- Discovered that WT1 directly binds to and regulates nine genes within the Wnt signaling pathway.
- Demonstrated that WT1 inhibits Wnt8-induced secondary body axis formation in Xenopus by competing with TCF4 for CBP, thereby stabilizing beta-catenin.
Conclusions:
- WT1 directly regulates a subset of Wnt pathway components and responsive genes.
- WT1's interference with Wnt signaling, through CBP competition, is a critical mechanism for its developmental and tumor-suppressive functions.
- These findings provide new insights into WT1's multifaceted roles in development and cancer.
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