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TCF transcription factors: molecular switches in carcinogenesis
1Department of Immunology, Center for Biomedical Genetics, University Medical Center Utrecht, 3508 GA, Utrecht, The Netherlands.
Abstract:
Although originally cloned as lymphoid transcription factors, members of the T-cell factor (Tcf) family are now well recognized as key activators/repressors in many developmental processes. Transcriptionally inert Tcf factors become potent transactivators upon interaction with the Wnt signaling product beta-catenin or its Drosophila counterpart Armadillo. In contrast, Tcf proteins mediate repression when bound to members of the Groucho family of transcriptional repressors, CBP and CtBP. Recently, Tcf factors have been reported as tumor inducers, aberrantly activating their target genes as a result of elevated beta-catenin levels in many types of cancer. These abnormal beta-catenin levels are usually caused by stabilizing mutations in beta-catenin itself or truncating mutations in the adenomatous polyposis coli (APC) tumor suppressor gene. In this review, we will give a chronological overview of the Tcf factors and the phenotypes of Tcf mutant mice, as well as Tcf-binding partners. We will discuss Tcf signaling upon interaction with different partners, resulting in activator and repressor roles of Tcf factors in the light of carcinogenic events.
Insights
T-cell factor (Tcf) proteins regulate gene expression, acting as activators with beta-catenin and repressors with Groucho. Aberrant Tcf signaling, driven by elevated beta-catenin in cancer, contributes to tumor development.
Area of Science:
- Molecular Biology
- Developmental Biology
- Cancer Biology
Background:
- T-cell factor (Tcf) proteins are transcription factors involved in development.
- Tcf activity is modulated by interactions with co-factors like beta-catenin and Groucho.
- Aberrant Tcf signaling is implicated in various cancers due to elevated beta-catenin.
Purpose of the Study:
- To provide a chronological overview of Tcf factors.
- To discuss Tcf-binding partners and their roles.
- To examine Tcf signaling in the context of cancer.
Main Methods:
- Review of existing literature on Tcf factors.
- Analysis of Tcf phenotypes in mutant mice.
- Discussion of Tcf-binding partners and signaling mechanisms.
Main Results:
- Tcf factors function as activators with beta-catenin and repressors with Groucho.
- Mutations in beta-catenin or APC lead to elevated beta-catenin levels.
- Abnormal Tcf activation contributes to tumorigenesis.
Conclusions:
- Tcf factors play dual roles as activators and repressors depending on binding partners.
- Dysregulated Tcf signaling is a significant factor in cancer development.
- Understanding Tcf interactions is crucial for cancer research.