Searching for Novel Cdk5 Substrates in Brain by Comparative Phosphoproteomics of Wild Type and Cdk5 -/- Mice
Author
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Contreras Vallejos, Erick
Author
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Utreras Puratich, Elías
es_CL
Author
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Bórquez Muñoz, Daniel
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Author
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Prochazkova, Michaela
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Author
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Terse, Anita
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Author
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Jaffe, Howard
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Author
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Toledo, Andrea
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Author
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Arruti, Cristina
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Author
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Pant, Harish C.
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Author
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Kulkarni, Ashok B.
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Author
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González Billault, Christian
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Admission date
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2014-12-23T15:16:11Z
Available date
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2014-12-23T15:16:11Z
Publication date
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2014
Cita de ítem
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PLoS ONE 9(3): e90363. 2014
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Identifier
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doi:10.1371/journal.pone.0090363
Identifier
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https://repositorio.uchile.cl/handle/2250/119862
General note
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Artículo de publicación ISI
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Abstract
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Protein phosphorylation is the most common post-translational modification that regulates several pivotal functions in cells.
Cyclin-dependent kinase 5 (Cdk5) is a proline-directed serine/threonine kinase which is mostly active in the nervous system.
It regulates several biological processes such as neuronal migration, cytoskeletal dynamics, axonal guidance and synaptic
plasticity among others. In search for novel substrates of Cdk5 in the brain we performed quantitative phosphoproteomics
analysis, isolating phosphoproteins from whole brain derived from E18.5 Cdk5+/+ and Cdk52/2 embryos, using an
Immobilized Metal-Ion Affinity Chromatography (IMAC), which specifically binds to phosphorylated proteins. The isolated
phosphoproteins were eluted and isotopically labeled for relative and absolute quantitation (iTRAQ) and mass spectrometry
identification. We found 40 proteins that showed decreased phosphorylation at Cdk52/2 brains. In addition, out of these 40
hypophosphorylated proteins we characterized two proteins, :MARCKS (Myristoylated Alanine-Rich protein Kinase C
substrate) and Grin1 (G protein regulated inducer of neurite outgrowth 1). MARCKS is known to be phosphorylated by Cdk5
in chick neural cells while Grin1 has not been reported to be phosphorylated by Cdk5. When these proteins were
overexpressed in N2A neuroblastoma cell line along with p35, serine phosphorylation in their Cdk5 motifs was found to be
increased. In contrast, treatments with roscovitine, the Cdk5 inhibitor, resulted in an opposite effect on serine
phosphorylation in N2A cells and primary hippocampal neurons transfected with MARCKS. In summary, the results
presented here identify Grin 1 as novel Cdk5 substrate and confirm previously identified MARCKS as a a bona fide Cdk5
substrate.
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Patrocinador
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The work was supported by CONICYT-24120958 and MECESUP-UCH7013 (EC) Fondecyt 1095089 and ACT1114 (to CG-B), PAI 79100009 and Fondecyt
11110136 (EU), and the Divisions of Intramural Research, National Institute of Dental and Craniofacial Research (ABK) and the National Institute of Neurological
Disorders and Stroke (HCP), National Institutes of Health, Bethesda, Maryland, United States of America. The funders had no role in study design, data collection
and analysis, decision to publish, or preparation of the manuscript.