The WRPW Motif of the Hairy-Related Basic Helix-Loop-Helix Repressor Proteins Acts as a 4-Amino-Acid Transcription Repression and Protein-Protein Interaction Domain
- 1 June 1996
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 16 (6) , 2670-2677
- https://doi.org/10.1128/mcb.16.6.2670
Abstract
Hairy-related proteins include the Drosophila Hairy and Enhancer of Split proteins and mammalian Hes proteins. These proteins are basic helix-loop-helix (bHLH) transcriptional repressors that control cell fate decisions such as neurogenesis or myogenesis in both Drosophila melanogaster and mammals. Hairy-related proteins are site-specific DNA-binding proteins defined by the presence of both a repressor-specific bHLH DNA binding domain and a carboxyl-terminal WRPW (Trp-Arg-Pro-Trp) motif. These proteins act as repressors by binding to DNA sites in target gene promoters and not by interfering with activator proteins, indicating that these proteins are active repressors which should therefore have specific repression domains. Here we show the WRPW motif to be a functional transcriptional repression domain sufficient to confer active repression to Hairy-related proteins or a heterologous DNA-binding protein, Ga14. This motif was previously shown to be necessary for interactions with Groucho, a genetically defined corepressor for Drosophila Hairy-related proteins. Here we show that the WRPW motif is sufficient to recruit Groucho or the TLE mammalian homologs to target gene promoters. We also show that Groucho and TLE proteins actively repress transcription when directly bound to a target gene promoter and identify a novel, highly conserved transcriptional repression domain in these proteins. These results directly demonstrate that Groucho family proteins are active transcriptional corepressors for Hairy-related proteins and are recruited by the 4-amino acid protein-protein interaction domain, WRPW.Keywords
This publication has 93 references indexed in Scilit:
- Suppressor of hairless directly activates transcription of enhancer of split complex genes in response to Notch receptor activity.Genes & Development, 1995
- The neurogenic suppressor of hairless DNA-binding protein mediates the transcriptional activation of the enhancer of split complex genes triggered by Notch signaling.Genes & Development, 1995
- A transcriptional co-repressor that interacts with nuclear hormone receptorsNature, 1995
- Ligand-independent repression by the thyroid hormone receptor mediated by a nuclear receptor co-repressorNature, 1995
- Signalling downstream of activated mammalian NotchNature, 1995
- Chromatin-mediated transcription repression in yeastCurrent Opinion in Genetics & Development, 1995
- Retinoblastoma protein switches the E2F site from positive to negative elementNature, 1992
- Patterning of the Drosophila nervous system: the achaete-scute gene complexTrends in Genetics, 1992
- Genetic and Molecular Bases of Neurogenesis in Drosophila MelanogasterAnnual Review of Neuroscience, 1991
- The enhancer of split locus and neurogenesis in Drosophila melanogasterDevelopmental Biology, 1987