TCF: Lady Justice Casting the Final Verdict on the Outcome of Wnt Signalling
- 15 February 2002
- journal article
- review article
- Published by Walter de Gruyter GmbH in Biological Chemistry
- Vol. 383 (2) , 255-261
- https://doi.org/10.1515/bc.2002.027
Abstract
The Wnt signalling cascade plays an important role during embryonic patterning and cell fate determination and is highly conserved throughout evolution. Factors of the TCF/LEF HMG domain family (Tcfs) are the downstream effectors of this signal transduction pathway. Upon Wnt signalling, a cascade is initiated that results in the translocation of beta-catenin to the nucleus, where it interacts with Tcf to generate a transcriptionally active complex. This bipartite transcription factor is targeted to the upstream regulatory regions of Tcf target genes. In the absence of Wnt signals, beta-catenin is degraded in the cytoplasm via the ubiquitin-proteasome pathway. Several proteins are instrumental in achieving this tight regulation of beta-catenin levels in the cell, including adenomatous polyposis coli (APC), GSK3 beta, and Axin/Conductin. Deregulation of the Wnt signalling pathway is implicated in several forms of cancer, such as colon carcinoma and melanoma. This deregulation is achieved via mutation of APC, beta-catenin or Axin, resulting in elevated beta-catenin levels and the presence of constitutively active Tcf-beta-catenin complexes in the nucleus. The accompanying inappropriate activation of target genes is considered to be a critical, early event in this carcinogenesis. In addition to regulating beta-catenin levels, normal healthy cells have evolved a second level of regulation, by manipulating the activity of the Tcf proteins themselves. In the absence of Wnt signalling, Tcf complexes with several transcriptional repressor proteins ensuring active repression of Tcf target genes. In this review the dual role of Tcf proteins in the Wnt signalling cascade will be discussed.Keywords
This publication has 68 references indexed in Scilit:
- Crystal Structure of Glycogen Synthase Kinase 3βCell, 2001
- The Many Faces of the Tumor Suppressor Gene APCExperimental Cell Research, 2001
- β-Catenin–Histone Deacetylase Interactions Regulate the Transition of LEF1 from a Transcriptional Repressor to an ActivatorMolecular and Cellular Biology, 2000
- The Transcriptional Coactivator Cbp Interacts with β-Catenin to Activate Gene ExpressionThe Journal of cell biology, 2000
- Synergy Between Tumor Suppressor APC and the β-Catenin-Tcf4 Target Tcf1Science, 1999
- Functional Characterization of Multiple Transactivating Elements in β-Catenin, Some of Which Interact with the TATA-binding Proteinin VitroPublished by Elsevier ,1999
- TCF: transcriptional activator or repressor?Current Opinion in Cell Biology, 1998
- Assembly and function of a TCR alpha enhancer complex is dependent on LEF-1-induced DNA bending and multiple protein-protein interactions.Genes & Development, 1995
- The HMG domain of lymphoid enhancer factor 1 bends DNA and facilitates assembly of functional nucleoprotein structuresCell, 1992
- DNA-binding properties of the HMG domain of the lymphoid-specific transcriptional regulator LEF-1.Genes & Development, 1991