Resumen
Epithelial-mesenchymal transition (EMT) is a transdifferentiation programme. The mechanism underlying the epigenetic regulation of EMT remains unclear. In this study, we identified that Snail1 interacted with histone lysine-specific demethylase 1 (LSD1). We demonstrated that the SNAG domain of Snail1 and the amine oxidase domain of LSD1 were required for their mutual interaction. Interestingly, the sequence of the SNAG domain is similar to that of the histone H3 tail, and the interaction of Snail1 with LSD1 can be blocked by LSD1 enzymatic inhibitors and a histone H3 peptide. We found that the formation of a Snail1-LSD1-CoREST ternary complex was critical for the stability and function of these proteins. The co-expression of these molecules was found in cancer cell lines and breast tumour specimens. Furthermore, we showed that the SNAG domain of Snail1 was critical for recruiting LSD1 to its target gene promoters and resulted in suppression of cell migration and invasion. Our study suggests that the SNAG domain of Snail1 resembles a histone H3-like structure and functions as a molecular hook for recruiting LSD1 to repress gene expression in metastasis.
| Idioma original | English |
|---|---|
| Páginas (desde-hasta) | 1803-1816 |
| Número de páginas | 14 |
| Publicación | EMBO Journal |
| Volumen | 29 |
| N.º | 11 |
| DOI | |
| Estado | Published - jun 2 2010 |
Financiación
| Financiadores | Número del financiador |
|---|---|
| ???publication-publication-funding-organisation-not-added??? | 201662 |
| National Childhood Cancer Registry – National Cancer Institute | R01CA125454 |
ODS de las Naciones Unidas
Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible
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Good health and well being
ASJC Scopus subject areas
- General Neuroscience
- Molecular Biology
- General Biochemistry, Genetics and Molecular Biology
- General Immunology and Microbiology
Huella
Profundice en los temas de investigación de 'The SNAG domain of snail1 functions as a molecular hook for recruiting lysine-specific demethylase 1'. En conjunto forman una huella única.Citar esto
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