dc.contributor.author
Viñas Castells, Rosa, 1985-
dc.contributor.author
Frías Hernández, Àlex, 1985-
dc.contributor.author
Robles Lanuza, Estefanía
dc.contributor.author
Zhang, Kun
dc.contributor.author
Longmore, Gregory D
dc.contributor.author
García de Herreros, Antonio
dc.contributor.author
Díaz, Víctor M.
dc.date.issued
2015-04-07T09:36:26Z
dc.date.issued
2015-04-07T09:36:26Z
dc.identifier
Vinas-Castells R, Frias A, Robles-Lanuza E, Zhang K, Longmore GD, Garcia De Herreros A, Diaz VM. Nuclear ubiquitination by FBXL5 modulates Snail1 DNA binding and stability. Nucleic Acids Research. 2014;42(2):1079-94. DOI: 10.1093/nar/gkt935
dc.identifier
http://hdl.handle.net/10230/23346
dc.identifier
http://dx.doi.org/10.1093/nar/gkt935
dc.description.abstract
The zinc finger transcription factor Snail1 regulates epithelial to mesenchymal transition, repressing epithelial markers and activating mesenchymal genes. Snail1 is an extremely labile protein degraded by the cytoplasmic ubiquitin-ligases β-TrCP1/FBXW1 and Ppa/FBXL14. Using a short hairpin RNA screening, we have identified FBXL5 as a novel Snail1 ubiquitin ligase. FBXL5 is located in the nucleus where it interacts with Snail1 promoting its polyubiquitination and affecting Snail1 protein stability and function by impairing DNA binding. Snail1 downregulation by FBXL5 is prevented by Lats2, a protein kinase that phosphorylates Snail1 precluding its nuclear export but not its polyubiquitination. Actually, although polyubiquitination by FBXL5 takes place in the nucleus, Snail1 is degraded in the cytosol. Finally, FBXL5 is highly sensitive to stress conditions and is downregulated by iron depletion and γ-irradiation, explaining Snail1 stabilization in these conditions. These results characterize a novel nuclear ubiquitin ligase controlling Snail1 protein stability and provide the molecular basis for understanding how radiotherapy upregulates the epithelial to mesenchymal transition-inducer Snail1.
dc.description.abstract
Fundación Científica de la Asociación Española contra el Cáncer, the Ministerio de Ciencia y Tecnología [SAF2010-16089] and Fundació La Marató de TV3 (to A.G.H.); The authors also acknowledge support from ISCIII/FEDER [RD06/0020/0040] and Generalitat de Catalunya [2009SGR867]; a predoctoral fellowship from ISCIII (to R.V.-C.). Funding for open access charge: Ministerio de Ciencia y Tecnología [SAF2010-16089].
dc.format
application/pdf
dc.format
application/pdf
dc.publisher
Oxford University Press
dc.relation
Nucleic Acids Research. 2014;42(2):1079-94
dc.relation
info:eu-repo/grantAgreement/ES/3PN/SAF2010-16089
dc.rights
© Vinas-Castells R, Frias A, Robles-Lanuza E, Zhang K, Longmore GD, Garcia De Herreros A, Diaz VM [2014]. Published by Oxford University Press. This is an Open Access article distributed under the terms of a Creative Commons Attribution License
dc.rights
http://creativecommons.org/licenses/by/3.0/
dc.rights
info:eu-repo/semantics/openAccess
dc.subject
Nuclis cel·lulars
dc.subject
Metabolisme -- Regulació
dc.title
Nuclear ubiquitination by FBXL5 modulates Snail1 DNA binding and stability
dc.type
info:eu-repo/semantics/article
dc.type
info:eu-repo/semantics/publishedVersion