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Plk4 Regulates Centriole Asymmetry and Spindle Orientation in Neural Stem Cells

Defects in mitotic spindle orientation (MSO) disrupt the organization of stem cell niches impacting tissue morphogenesis and homeostasis. Mutations in centrosome genes reduce MSO fidelity, leading to tissue dysplasia and causing several diseases such as microcephaly, dwarfism, and cancer. Whether th...

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Autores principales: Gambarotto, Davide, Pennetier, Carole, Ryniawec, John M., Buster, Daniel W., Gogendeau, Delphine, Goupil, Alix, Nano, Maddalena, Simon, Anthony, Blanc, Damien, Racine, Victor, Kimata, Yuu, Rogers, Gregory C., Basto, Renata
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6614718/
https://www.ncbi.nlm.nih.gov/pubmed/31130353
http://dx.doi.org/10.1016/j.devcel.2019.04.036
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author Gambarotto, Davide
Pennetier, Carole
Ryniawec, John M.
Buster, Daniel W.
Gogendeau, Delphine
Goupil, Alix
Nano, Maddalena
Simon, Anthony
Blanc, Damien
Racine, Victor
Kimata, Yuu
Rogers, Gregory C.
Basto, Renata
author_facet Gambarotto, Davide
Pennetier, Carole
Ryniawec, John M.
Buster, Daniel W.
Gogendeau, Delphine
Goupil, Alix
Nano, Maddalena
Simon, Anthony
Blanc, Damien
Racine, Victor
Kimata, Yuu
Rogers, Gregory C.
Basto, Renata
author_sort Gambarotto, Davide
collection PubMed
description Defects in mitotic spindle orientation (MSO) disrupt the organization of stem cell niches impacting tissue morphogenesis and homeostasis. Mutations in centrosome genes reduce MSO fidelity, leading to tissue dysplasia and causing several diseases such as microcephaly, dwarfism, and cancer. Whether these mutations perturb spindle orientation solely by affecting astral microtubule nucleation or whether centrosome proteins have more direct functions in regulating MSO is unknown. To investigate this question, we analyzed the consequences of deregulating Plk4 (the master centriole duplication kinase) activity in Drosophila asymmetrically dividing neural stem cells. We found that Plk4 functions upstream of MSO control, orchestrating centriole symmetry breaking and consequently centrosome positioning. Mechanistically, we show that Plk4 acts through Spd2 phosphorylation, which induces centriole release from the apical cortex. Overall, this work not only reveals a role for Plk4 in regulating centrosome function but also links the centrosome biogenesis machinery with the MSO apparatus.
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spelling pubmed-66147182019-07-18 Plk4 Regulates Centriole Asymmetry and Spindle Orientation in Neural Stem Cells Gambarotto, Davide Pennetier, Carole Ryniawec, John M. Buster, Daniel W. Gogendeau, Delphine Goupil, Alix Nano, Maddalena Simon, Anthony Blanc, Damien Racine, Victor Kimata, Yuu Rogers, Gregory C. Basto, Renata Dev Cell Article Defects in mitotic spindle orientation (MSO) disrupt the organization of stem cell niches impacting tissue morphogenesis and homeostasis. Mutations in centrosome genes reduce MSO fidelity, leading to tissue dysplasia and causing several diseases such as microcephaly, dwarfism, and cancer. Whether these mutations perturb spindle orientation solely by affecting astral microtubule nucleation or whether centrosome proteins have more direct functions in regulating MSO is unknown. To investigate this question, we analyzed the consequences of deregulating Plk4 (the master centriole duplication kinase) activity in Drosophila asymmetrically dividing neural stem cells. We found that Plk4 functions upstream of MSO control, orchestrating centriole symmetry breaking and consequently centrosome positioning. Mechanistically, we show that Plk4 acts through Spd2 phosphorylation, which induces centriole release from the apical cortex. Overall, this work not only reveals a role for Plk4 in regulating centrosome function but also links the centrosome biogenesis machinery with the MSO apparatus. Cell Press 2019-07-01 /pmc/articles/PMC6614718/ /pubmed/31130353 http://dx.doi.org/10.1016/j.devcel.2019.04.036 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Gambarotto, Davide
Pennetier, Carole
Ryniawec, John M.
Buster, Daniel W.
Gogendeau, Delphine
Goupil, Alix
Nano, Maddalena
Simon, Anthony
Blanc, Damien
Racine, Victor
Kimata, Yuu
Rogers, Gregory C.
Basto, Renata
Plk4 Regulates Centriole Asymmetry and Spindle Orientation in Neural Stem Cells
title Plk4 Regulates Centriole Asymmetry and Spindle Orientation in Neural Stem Cells
title_full Plk4 Regulates Centriole Asymmetry and Spindle Orientation in Neural Stem Cells
title_fullStr Plk4 Regulates Centriole Asymmetry and Spindle Orientation in Neural Stem Cells
title_full_unstemmed Plk4 Regulates Centriole Asymmetry and Spindle Orientation in Neural Stem Cells
title_short Plk4 Regulates Centriole Asymmetry and Spindle Orientation in Neural Stem Cells
title_sort plk4 regulates centriole asymmetry and spindle orientation in neural stem cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6614718/
https://www.ncbi.nlm.nih.gov/pubmed/31130353
http://dx.doi.org/10.1016/j.devcel.2019.04.036
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