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Published on: June 17, 2014
Structure-based mutational analysis of ICAT residues mediating negative regulation of β-catenin co-transcriptional
Mélanie J Domingues1,2,3,4,5, Juan Martinez-Sanz1,2,6,7, Laura Papon1,2,3,4,5
1Institut Curie, PSL Research University, Bâtiment, Orsay, France.
Abstract:
ICAT (Inhibitor of β-CAtenin and TCF) is a small acidic protein that negatively regulates β-catenin co-transcriptional activity by competing with TCF/LEF factors in their binding to β-catenin superhelical core. In melanoma cells, ICAT competes with LEF1 to negatively regulate the M-MITF and NEDD9 target genes. The structure of ICAT consists of two domains: the 3-helix bundle N-terminal domain binds to β-catenin Armadillo (Arm) repeats 10-12 and the C-terminal tail binds to Arm repeats 5-9. To elucidate the structural mechanisms governing ICAT/β-catenin interactions in melanoma cells, three ICAT residues Y15, K19 and V22 in the N-terminal domain, contacting hydrophobic β-catenin residue F660, were mutated and interaction was assessed by immunoprecipitation. Despite the moderate hydrophobicity of the contact, its removal completely abolished the interaction. In the ICAT C-terminal tail consensus sequence, neutralization of the electrostatic interactions between residues D66, E75 and β-catenin residues K435, K312, coupled to deletion of the hydrophobic contact between F71 and β-catenin R386, markedly reduced, but failed to abolish the ICAT-mediated negative regulation of M-MITF and NEDD9 promoters. We conclude that in melanoma cells, anchoring of ICAT N-terminal domain to β-catenin through the hook made by residue F660, trapped in the pincers formed by ICAT residues Y15 and V22, is crucial for stabilizing the ICAT/β-catenin complex. This is a prerequisite for binding of the consensus peptide to Arm repeats 5-9 and competition with LEF1. Differences between ICAT and LEF1 in their affinity for β-catenin may rely on the absence in ICAT of hydrophilic residues between D66 and F71.
Insights
The Inhibitor of β-Catenin and TCF (ICAT) protein’s N-terminal domain is crucial for stabilizing its interaction with β-catenin in melanoma cells. This interaction is essential for regulating target genes like M-MITF and NEDD9.
Area of Science:
- Molecular Biology
- Cancer Research
- Structural Biology
Background:
- The Inhibitor of β-Catenin and TCF (ICAT) protein negatively regulates β-catenin co-transcriptional activity.
- ICAT competes with TCF/LEF transcription factors for binding to β-catenin.
- In melanoma, ICAT targets M-MITF and NEDD9 genes.
Purpose of the Study:
- To elucidate the structural mechanisms of ICAT/β-catenin interactions in melanoma cells.
- To identify key residues in ICAT's N-terminal domain critical for β-catenin binding.
- To understand how ICAT binding affects target gene regulation.
Main Methods:
- Site-directed mutagenesis of specific ICAT residues (Y15, K19, V22).
- Assessment of ICAT/β-catenin interaction using immunoprecipitation.
- Analysis of ICAT's effect on M-MITF and NEDD9 promoter activity.
Main Results:
- Mutation of ICAT residues Y15, K19, and V22 abolished interaction with β-catenin.
- Neutralization of electrostatic and hydrophobic interactions in the C-terminal tail reduced, but did not abolish, ICAT's regulatory function.
- The N-terminal domain's interaction with β-catenin is critical for stabilizing the complex.
Conclusions:
- The N-terminal domain of ICAT, specifically residues Y15, K19, and V22, is essential for stable ICAT/β-catenin complex formation via interaction with β-catenin residue F660.
- This stable complex is a prerequisite for ICAT's C-terminal domain to bind β-catenin and inhibit LEF1.
- Structural differences, particularly the absence of hydrophilic residues in ICAT, may explain affinity variations compared to LEF1.
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