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Polarized Cdc42 activation promotes polar body protrusion and asymmetric division in mouse oocytes

Asymmetric meiotic divisions in mammalian oocytes rely on the eccentric positioning of the spindle and the remodeling of the overlying cortex, resulting in the formation of small polar bodies. The mechanism of this cortical polarization, exemplified by the formation of a thick F-actin cap, is poorly...

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Autores principales: Dehapiot, Benoit, Carrière, Virginie, Carroll, John, Halet, Guillaume
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3690527/
https://www.ncbi.nlm.nih.gov/pubmed/23384564
http://dx.doi.org/10.1016/j.ydbio.2013.01.029
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author Dehapiot, Benoit
Carrière, Virginie
Carroll, John
Halet, Guillaume
author_facet Dehapiot, Benoit
Carrière, Virginie
Carroll, John
Halet, Guillaume
author_sort Dehapiot, Benoit
collection PubMed
description Asymmetric meiotic divisions in mammalian oocytes rely on the eccentric positioning of the spindle and the remodeling of the overlying cortex, resulting in the formation of small polar bodies. The mechanism of this cortical polarization, exemplified by the formation of a thick F-actin cap, is poorly understood. Cdc42 is a major player in cell polarization in many systems; however, the spatio-temporal dynamics of Cdc42 activation during oocyte meiosis, and its contribution to mammalian oocyte polarization, have remained elusive. In this study, we investigated Cdc42 activation (Cdc42–GTP), dynamics and role during mouse oocyte meiotic divisions. We show that Cdc42–GTP accumulates in restricted cortical regions overlying meiotic chromosomes or chromatids, in a Ran–GTP-dependent manner. This polarized activation of Cdc42 is required for the recruitment of N-WASP and the formation of F-actin-rich protrusions during polar body formation. Cdc42 inhibition in MII oocytes resulted in the release of N-WASP into the cytosol, a loss of the polarized F-actin cap, and a failure to protrude the second polar body. Cdc42 inhibition also resulted in central spindle defects in activated MII oocytes. In contrast, emission of the first polar body during oocyte maturation could occur in the absence of a functional Cdc42/N-WASP pathway. Therefore, Cdc42 is a new protagonist in chromatin-induced cortical polarization in mammalian oocytes, with an essential role in meiosis II completion, through the recruitment and activation of N-WASP, downstream of the chromatin-centered Ran–GTP gradient.
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spelling pubmed-36905272013-06-24 Polarized Cdc42 activation promotes polar body protrusion and asymmetric division in mouse oocytes Dehapiot, Benoit Carrière, Virginie Carroll, John Halet, Guillaume Dev Biol Article Asymmetric meiotic divisions in mammalian oocytes rely on the eccentric positioning of the spindle and the remodeling of the overlying cortex, resulting in the formation of small polar bodies. The mechanism of this cortical polarization, exemplified by the formation of a thick F-actin cap, is poorly understood. Cdc42 is a major player in cell polarization in many systems; however, the spatio-temporal dynamics of Cdc42 activation during oocyte meiosis, and its contribution to mammalian oocyte polarization, have remained elusive. In this study, we investigated Cdc42 activation (Cdc42–GTP), dynamics and role during mouse oocyte meiotic divisions. We show that Cdc42–GTP accumulates in restricted cortical regions overlying meiotic chromosomes or chromatids, in a Ran–GTP-dependent manner. This polarized activation of Cdc42 is required for the recruitment of N-WASP and the formation of F-actin-rich protrusions during polar body formation. Cdc42 inhibition in MII oocytes resulted in the release of N-WASP into the cytosol, a loss of the polarized F-actin cap, and a failure to protrude the second polar body. Cdc42 inhibition also resulted in central spindle defects in activated MII oocytes. In contrast, emission of the first polar body during oocyte maturation could occur in the absence of a functional Cdc42/N-WASP pathway. Therefore, Cdc42 is a new protagonist in chromatin-induced cortical polarization in mammalian oocytes, with an essential role in meiosis II completion, through the recruitment and activation of N-WASP, downstream of the chromatin-centered Ran–GTP gradient. Elsevier 2013-05-01 /pmc/articles/PMC3690527/ /pubmed/23384564 http://dx.doi.org/10.1016/j.ydbio.2013.01.029 Text en © 2013 Elsevier Inc. https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Article
Dehapiot, Benoit
Carrière, Virginie
Carroll, John
Halet, Guillaume
Polarized Cdc42 activation promotes polar body protrusion and asymmetric division in mouse oocytes
title Polarized Cdc42 activation promotes polar body protrusion and asymmetric division in mouse oocytes
title_full Polarized Cdc42 activation promotes polar body protrusion and asymmetric division in mouse oocytes
title_fullStr Polarized Cdc42 activation promotes polar body protrusion and asymmetric division in mouse oocytes
title_full_unstemmed Polarized Cdc42 activation promotes polar body protrusion and asymmetric division in mouse oocytes
title_short Polarized Cdc42 activation promotes polar body protrusion and asymmetric division in mouse oocytes
title_sort polarized cdc42 activation promotes polar body protrusion and asymmetric division in mouse oocytes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3690527/
https://www.ncbi.nlm.nih.gov/pubmed/23384564
http://dx.doi.org/10.1016/j.ydbio.2013.01.029
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