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Centrosomal AKAP350 modulates the G(1)/S transition

AKAP350 (AKAP450/AKAP9/CG-NAP) is an A-kinase anchoring protein, which recruits multiple signaling proteins to the Golgi apparatus and the centrosomes. Several proteins recruited to the centrosomes by this scaffold participate in the regulation of the cell cycle. Previous studies indicated that AKAP...

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Autores principales: Mattaloni, Stella M, Ferretti, Anabela C, Tonucci, Facundo M, Favre, Cristián, Goldenring, James R, Larocca, M Cecilia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3891632/
https://www.ncbi.nlm.nih.gov/pubmed/24475373
http://dx.doi.org/10.4161/cl.26331
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author Mattaloni, Stella M
Ferretti, Anabela C
Tonucci, Facundo M
Favre, Cristián
Goldenring, James R
Larocca, M Cecilia
author_facet Mattaloni, Stella M
Ferretti, Anabela C
Tonucci, Facundo M
Favre, Cristián
Goldenring, James R
Larocca, M Cecilia
author_sort Mattaloni, Stella M
collection PubMed
description AKAP350 (AKAP450/AKAP9/CG-NAP) is an A-kinase anchoring protein, which recruits multiple signaling proteins to the Golgi apparatus and the centrosomes. Several proteins recruited to the centrosomes by this scaffold participate in the regulation of the cell cycle. Previous studies indicated that AKAP350 participates in centrosome duplication. In the present study we specifically assessed the role of AKAP350 in the progression of the cell cycle. Our results showed that interference with AKAP350 expression inhibits G(1)/S transition, decreasing the initiation of both DNA synthesis and centrosome duplication. We identified an AKAP350 carboxyl-terminal domain (AKAP350CTD), which contained the centrosomal targeting domain of AKAP350 and induced the initiation of DNA synthesis. Nevertheless, AKAP350CTD expression did not induce centrosomal duplication. AKAP350CTD partially delocalized endogenous AKAP350 from the centrosomes, but increased the centrosomal levels of the cyclin-dependent kinase 2 (Cdk2). Accordingly, the expression of this AKAP350 domain increased the endogenous phosphorylation of nucleophosmin by Cdk2, which occurs at the G(1)/S transition and is a marker of the centrosomal activity of the cyclin E-Cdk2 complex. Cdk2 recruitment to the centrosomes is a necessary event for the development of the G(1)/S transition. Altogether, our results indicate that AKAP350 facilitates the initiation of DNA synthesis by scaffolding Cdk2 to the centrosomes, and enabling its specific activity at this organelle. Although this mechanism could also be involved in AKAP350-dependent modulation of centrosomal duplication, it is not sufficient to account for this process.
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spelling pubmed-38916322014-01-28 Centrosomal AKAP350 modulates the G(1)/S transition Mattaloni, Stella M Ferretti, Anabela C Tonucci, Facundo M Favre, Cristián Goldenring, James R Larocca, M Cecilia Cell Logist Research Paper AKAP350 (AKAP450/AKAP9/CG-NAP) is an A-kinase anchoring protein, which recruits multiple signaling proteins to the Golgi apparatus and the centrosomes. Several proteins recruited to the centrosomes by this scaffold participate in the regulation of the cell cycle. Previous studies indicated that AKAP350 participates in centrosome duplication. In the present study we specifically assessed the role of AKAP350 in the progression of the cell cycle. Our results showed that interference with AKAP350 expression inhibits G(1)/S transition, decreasing the initiation of both DNA synthesis and centrosome duplication. We identified an AKAP350 carboxyl-terminal domain (AKAP350CTD), which contained the centrosomal targeting domain of AKAP350 and induced the initiation of DNA synthesis. Nevertheless, AKAP350CTD expression did not induce centrosomal duplication. AKAP350CTD partially delocalized endogenous AKAP350 from the centrosomes, but increased the centrosomal levels of the cyclin-dependent kinase 2 (Cdk2). Accordingly, the expression of this AKAP350 domain increased the endogenous phosphorylation of nucleophosmin by Cdk2, which occurs at the G(1)/S transition and is a marker of the centrosomal activity of the cyclin E-Cdk2 complex. Cdk2 recruitment to the centrosomes is a necessary event for the development of the G(1)/S transition. Altogether, our results indicate that AKAP350 facilitates the initiation of DNA synthesis by scaffolding Cdk2 to the centrosomes, and enabling its specific activity at this organelle. Although this mechanism could also be involved in AKAP350-dependent modulation of centrosomal duplication, it is not sufficient to account for this process. Landes Bioscience 2013-01-01 2013-10-10 /pmc/articles/PMC3891632/ /pubmed/24475373 http://dx.doi.org/10.4161/cl.26331 Text en Copyright © 2013 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Research Paper
Mattaloni, Stella M
Ferretti, Anabela C
Tonucci, Facundo M
Favre, Cristián
Goldenring, James R
Larocca, M Cecilia
Centrosomal AKAP350 modulates the G(1)/S transition
title Centrosomal AKAP350 modulates the G(1)/S transition
title_full Centrosomal AKAP350 modulates the G(1)/S transition
title_fullStr Centrosomal AKAP350 modulates the G(1)/S transition
title_full_unstemmed Centrosomal AKAP350 modulates the G(1)/S transition
title_short Centrosomal AKAP350 modulates the G(1)/S transition
title_sort centrosomal akap350 modulates the g(1)/s transition
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3891632/
https://www.ncbi.nlm.nih.gov/pubmed/24475373
http://dx.doi.org/10.4161/cl.26331
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