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Silencing of Doublecortin-Like (DCL) Results in Decreased Mitochondrial Activity and Delayed Neuroblastoma Tumor Growth

Doublecortin-like (DCL) is a microtubule-binding protein crucial for neuroblastoma (NB) cell proliferation. We have investigated whether the anti-proliferative effect of DCL knockdown is linked to reduced mitochondrial activity. We found a delay in tumor development after DCL knockdown in vivo in do...

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Autores principales: Verissimo, Carla S., Elands, Rachel, Cheng, Sou, Saaltink, Dirk-Jan, ter Horst, Judith P., Alme, Maria N., Pont, Chantal, van de Water, Bob, Håvik, Bjarte, Fitzsimons, Carlos P., Vreugdenhil, Erno
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3784435/
https://www.ncbi.nlm.nih.gov/pubmed/24086625
http://dx.doi.org/10.1371/journal.pone.0075752
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author Verissimo, Carla S.
Elands, Rachel
Cheng, Sou
Saaltink, Dirk-Jan
ter Horst, Judith P.
Alme, Maria N.
Pont, Chantal
van de Water, Bob
Håvik, Bjarte
Fitzsimons, Carlos P.
Vreugdenhil, Erno
author_facet Verissimo, Carla S.
Elands, Rachel
Cheng, Sou
Saaltink, Dirk-Jan
ter Horst, Judith P.
Alme, Maria N.
Pont, Chantal
van de Water, Bob
Håvik, Bjarte
Fitzsimons, Carlos P.
Vreugdenhil, Erno
author_sort Verissimo, Carla S.
collection PubMed
description Doublecortin-like (DCL) is a microtubule-binding protein crucial for neuroblastoma (NB) cell proliferation. We have investigated whether the anti-proliferative effect of DCL knockdown is linked to reduced mitochondrial activity. We found a delay in tumor development after DCL knockdown in vivo in doxycycline-inducible NB tumor xenografts. To understand the mechanisms underlying this tumor growth retardation we performed a series of in vitro experiments in NB cell lines. DCL colocalizes with mitochondria, interacts with the mitochondrial outer membrane protein OMP25/ SYNJ2BP and DCL knockdown results in decreased expression of genes involved in oxidative phosphorylation. Moreover, DCL knockdown decreases cytochrome c oxidase activity and ATP synthesis. We identified the C-terminal Serine/Proline-rich domain and the second microtubule-binding area as crucial DCL domains for the regulation of cytochrome c oxidase activity and ATP synthesis. Furthermore, DCL knockdown causes a significant reduction in the proliferation rate of NB cells under an energetic challenge induced by low glucose availability. Together with our previous studies, our results corroborate DCL as a key player in NB tumor growth in which DCL controls not only mitotic spindle formation and the stabilization of the microtubule cytoskeleton, but also regulates mitochondrial activity and energy availability, which makes DCL a promising molecular target for NB therapy.
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spelling pubmed-37844352013-10-01 Silencing of Doublecortin-Like (DCL) Results in Decreased Mitochondrial Activity and Delayed Neuroblastoma Tumor Growth Verissimo, Carla S. Elands, Rachel Cheng, Sou Saaltink, Dirk-Jan ter Horst, Judith P. Alme, Maria N. Pont, Chantal van de Water, Bob Håvik, Bjarte Fitzsimons, Carlos P. Vreugdenhil, Erno PLoS One Research Article Doublecortin-like (DCL) is a microtubule-binding protein crucial for neuroblastoma (NB) cell proliferation. We have investigated whether the anti-proliferative effect of DCL knockdown is linked to reduced mitochondrial activity. We found a delay in tumor development after DCL knockdown in vivo in doxycycline-inducible NB tumor xenografts. To understand the mechanisms underlying this tumor growth retardation we performed a series of in vitro experiments in NB cell lines. DCL colocalizes with mitochondria, interacts with the mitochondrial outer membrane protein OMP25/ SYNJ2BP and DCL knockdown results in decreased expression of genes involved in oxidative phosphorylation. Moreover, DCL knockdown decreases cytochrome c oxidase activity and ATP synthesis. We identified the C-terminal Serine/Proline-rich domain and the second microtubule-binding area as crucial DCL domains for the regulation of cytochrome c oxidase activity and ATP synthesis. Furthermore, DCL knockdown causes a significant reduction in the proliferation rate of NB cells under an energetic challenge induced by low glucose availability. Together with our previous studies, our results corroborate DCL as a key player in NB tumor growth in which DCL controls not only mitotic spindle formation and the stabilization of the microtubule cytoskeleton, but also regulates mitochondrial activity and energy availability, which makes DCL a promising molecular target for NB therapy. Public Library of Science 2013-09-26 /pmc/articles/PMC3784435/ /pubmed/24086625 http://dx.doi.org/10.1371/journal.pone.0075752 Text en © 2013 Verissimo et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Verissimo, Carla S.
Elands, Rachel
Cheng, Sou
Saaltink, Dirk-Jan
ter Horst, Judith P.
Alme, Maria N.
Pont, Chantal
van de Water, Bob
Håvik, Bjarte
Fitzsimons, Carlos P.
Vreugdenhil, Erno
Silencing of Doublecortin-Like (DCL) Results in Decreased Mitochondrial Activity and Delayed Neuroblastoma Tumor Growth
title Silencing of Doublecortin-Like (DCL) Results in Decreased Mitochondrial Activity and Delayed Neuroblastoma Tumor Growth
title_full Silencing of Doublecortin-Like (DCL) Results in Decreased Mitochondrial Activity and Delayed Neuroblastoma Tumor Growth
title_fullStr Silencing of Doublecortin-Like (DCL) Results in Decreased Mitochondrial Activity and Delayed Neuroblastoma Tumor Growth
title_full_unstemmed Silencing of Doublecortin-Like (DCL) Results in Decreased Mitochondrial Activity and Delayed Neuroblastoma Tumor Growth
title_short Silencing of Doublecortin-Like (DCL) Results in Decreased Mitochondrial Activity and Delayed Neuroblastoma Tumor Growth
title_sort silencing of doublecortin-like (dcl) results in decreased mitochondrial activity and delayed neuroblastoma tumor growth
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3784435/
https://www.ncbi.nlm.nih.gov/pubmed/24086625
http://dx.doi.org/10.1371/journal.pone.0075752
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