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Regulation of Asymmetrical Cytokinesis by cAMP during Meiosis I in Mouse Oocytes

Mammalian oocytes undergo an asymmetrical first meiotic division, extruding half of their chromosomes in a small polar body to preserve maternal resources for embryonic development. To divide asymmetrically, mammalian oocytes relocate chromosomes from the center of the cell to the cortex, but little...

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Autores principales: Chen, Dawei, Zhang, Yuanwei, Yi, Qiyi, Huang, Yun, Hou, Heli, Zhang, Yingyin, Hao, Qiaomei, Cooke, Howard J., Li, Lei, Sun, Qingyuan, Shi, Qinghua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3256179/
https://www.ncbi.nlm.nih.gov/pubmed/22253767
http://dx.doi.org/10.1371/journal.pone.0029735
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author Chen, Dawei
Zhang, Yuanwei
Yi, Qiyi
Huang, Yun
Hou, Heli
Zhang, Yingyin
Hao, Qiaomei
Cooke, Howard J.
Li, Lei
Sun, Qingyuan
Shi, Qinghua
author_facet Chen, Dawei
Zhang, Yuanwei
Yi, Qiyi
Huang, Yun
Hou, Heli
Zhang, Yingyin
Hao, Qiaomei
Cooke, Howard J.
Li, Lei
Sun, Qingyuan
Shi, Qinghua
author_sort Chen, Dawei
collection PubMed
description Mammalian oocytes undergo an asymmetrical first meiotic division, extruding half of their chromosomes in a small polar body to preserve maternal resources for embryonic development. To divide asymmetrically, mammalian oocytes relocate chromosomes from the center of the cell to the cortex, but little is known about the underlying mechanisms. Here, we show that upon the elevation of intracellular cAMP level, mouse oocytes produced two daughter cells with similar sizes. This symmetrical cell division could be rescued by the inhibition of PKA, a cAMP-dependent protein kinase. Live cell imaging revealed that a symmetrically localized cleavage furrow resulted in symmetrical cell division. Detailed analyses demonstrated that symmetrically localized cleavage furrows were caused by the inappropriate central positioning of chromosome clusters at anaphase onset, indicating that chromosome cluster migration was impaired. Notably, high intracellular cAMP reduced myosin II activity, and the microinjection of phospho-myosin II antibody into the oocytes impeded chromosome migration and promoted symmetrical cell division. Our results support the hypothesis that cAMP plays a role in regulating asymmetrical cell division by modulating myosin II activity during mouse oocyte meiosis I, providing a novel insight into the regulation of female gamete formation in mammals.
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spelling pubmed-32561792012-01-17 Regulation of Asymmetrical Cytokinesis by cAMP during Meiosis I in Mouse Oocytes Chen, Dawei Zhang, Yuanwei Yi, Qiyi Huang, Yun Hou, Heli Zhang, Yingyin Hao, Qiaomei Cooke, Howard J. Li, Lei Sun, Qingyuan Shi, Qinghua PLoS One Research Article Mammalian oocytes undergo an asymmetrical first meiotic division, extruding half of their chromosomes in a small polar body to preserve maternal resources for embryonic development. To divide asymmetrically, mammalian oocytes relocate chromosomes from the center of the cell to the cortex, but little is known about the underlying mechanisms. Here, we show that upon the elevation of intracellular cAMP level, mouse oocytes produced two daughter cells with similar sizes. This symmetrical cell division could be rescued by the inhibition of PKA, a cAMP-dependent protein kinase. Live cell imaging revealed that a symmetrically localized cleavage furrow resulted in symmetrical cell division. Detailed analyses demonstrated that symmetrically localized cleavage furrows were caused by the inappropriate central positioning of chromosome clusters at anaphase onset, indicating that chromosome cluster migration was impaired. Notably, high intracellular cAMP reduced myosin II activity, and the microinjection of phospho-myosin II antibody into the oocytes impeded chromosome migration and promoted symmetrical cell division. Our results support the hypothesis that cAMP plays a role in regulating asymmetrical cell division by modulating myosin II activity during mouse oocyte meiosis I, providing a novel insight into the regulation of female gamete formation in mammals. Public Library of Science 2012-01-11 /pmc/articles/PMC3256179/ /pubmed/22253767 http://dx.doi.org/10.1371/journal.pone.0029735 Text en Chen 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
Chen, Dawei
Zhang, Yuanwei
Yi, Qiyi
Huang, Yun
Hou, Heli
Zhang, Yingyin
Hao, Qiaomei
Cooke, Howard J.
Li, Lei
Sun, Qingyuan
Shi, Qinghua
Regulation of Asymmetrical Cytokinesis by cAMP during Meiosis I in Mouse Oocytes
title Regulation of Asymmetrical Cytokinesis by cAMP during Meiosis I in Mouse Oocytes
title_full Regulation of Asymmetrical Cytokinesis by cAMP during Meiosis I in Mouse Oocytes
title_fullStr Regulation of Asymmetrical Cytokinesis by cAMP during Meiosis I in Mouse Oocytes
title_full_unstemmed Regulation of Asymmetrical Cytokinesis by cAMP during Meiosis I in Mouse Oocytes
title_short Regulation of Asymmetrical Cytokinesis by cAMP during Meiosis I in Mouse Oocytes
title_sort regulation of asymmetrical cytokinesis by camp during meiosis i in mouse oocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3256179/
https://www.ncbi.nlm.nih.gov/pubmed/22253767
http://dx.doi.org/10.1371/journal.pone.0029735
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