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Identification of RSK substrates using an analog-sensitive kinase approach.
Lizcano-Perret, Belén; Vertommen, Didier; Herinckx, Gaëtan; Calabrese, Viviane; Gatto, Laurent; Roux, Philippe P; Michiels, Thomas.
Afiliação
  • Lizcano-Perret B; Molecular Virology Unit, de Duve Institute, Université Catholique de Louvain, Brussels, Belgium.
  • Vertommen D; MASSPROT Platform, de Duve Institute, Université Catholique de Louvain, Brussels, Belgium.
  • Herinckx G; MASSPROT Platform, de Duve Institute, Université Catholique de Louvain, Brussels, Belgium.
  • Calabrese V; Institute for Research in Immunology and Cancer (IRIC), Université de Montréal, Montreal, Quebec, Canada.
  • Gatto L; Computational Biology and Bioinformatics Unit, de Duve Institute, Université Catholique de Louvain, Brussels, Belgium.
  • Roux PP; Institute for Research in Immunology and Cancer (IRIC), Université de Montréal, Montreal, Quebec, Canada; Faculty of Medicine, Department of Pathology and Cell Biology, Université de Montréal, Montreal, Quebec, Canada.
  • Michiels T; Molecular Virology Unit, de Duve Institute, Université Catholique de Louvain, Brussels, Belgium. Electronic address: thomas.michiels@uclouvain.be.
J Biol Chem ; 300(3): 105739, 2024 Mar.
Article em En | MEDLINE | ID: mdl-38342435
ABSTRACT
The p90 ribosomal S6 kinases (RSK) family of serine/threonine kinases comprises four isoforms (RSK1-4) that lie downstream of the ERK1/2 mitogen-activated protein kinase pathway. RSKs are implicated in fine tuning of cellular processes such as translation, transcription, proliferation, and motility. Previous work showed that pathogens such as Cardioviruses could hijack any of the four RSK isoforms to inhibit PKR activation or to disrupt cellular nucleocytoplasmic trafficking. In contrast, some reports suggest nonredundant functions for distinct RSK isoforms, whereas Coffin-Lowry syndrome has only been associated with mutations in the gene encoding RSK2. In this work, we used the analog-sensitive kinase strategy to ask whether the cellular substrates of distinct RSK isoforms differ. We compared the substrates of two of the most distant RSK isoforms RSK1 and RSK4. We identified a series of potential substrates for both RSKs in cells and validated RanBP3, PDCD4, IRS2, and ZC3H11A as substrates of both RSK1 and RSK4, and SORBS2 as an RSK1 substrate. In addition, using mutagenesis and inhibitors, we confirmed analog-sensitive kinase data showing that endogenous RSKs phosphorylate TRIM33 at S1119. Our data thus identify a series of potential RSK substrates and suggest that the substrates of RSK1 and RSK4 largely overlap and that the specificity of the various RSK isoforms likely depends on their cell- or tissue-specific expression pattern.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Especificidade por Substrato / Proteínas Quinases S6 Ribossômicas 90-kDa Tipo de estudo: Diagnostic_studies Limite: Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Especificidade por Substrato / Proteínas Quinases S6 Ribossômicas 90-kDa Tipo de estudo: Diagnostic_studies Limite: Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article