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Space Asymmetry Directs Preferential Sperm Entry in the Absence of Polarity in the Mouse Oocyte

Knowledge about the mechanism that establishes embryonic polarity is fundamental in understanding mammalian development. In re-addressing several controversial claims, we recently proposed a model in which mouse embryonic polarity is not specified until the blastocyst stage. Before fertilization, th...

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Autores principales: Motosugi, Nami, Dietrich, Jens-Erik, Polanski, Zbigniew, Solter, Davor, Hiiragi, Takashi
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1440932/
https://www.ncbi.nlm.nih.gov/pubmed/16620153
http://dx.doi.org/10.1371/journal.pbio.0040135
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author Motosugi, Nami
Dietrich, Jens-Erik
Polanski, Zbigniew
Solter, Davor
Hiiragi, Takashi
author_facet Motosugi, Nami
Dietrich, Jens-Erik
Polanski, Zbigniew
Solter, Davor
Hiiragi, Takashi
author_sort Motosugi, Nami
collection PubMed
description Knowledge about the mechanism that establishes embryonic polarity is fundamental in understanding mammalian development. In re-addressing several controversial claims, we recently proposed a model in which mouse embryonic polarity is not specified until the blastocyst stage. Before fertilization, the fully differentiated oocyte has been characterized as “polarized,” and we indeed observed that the sperm preferentially enters the polar body half. Here we show that preferential sperm entry is not due to an intrinsic polarity of the oocyte, since fertilization takes place uniformly when the zona pellucida is removed. We suggest that the term “asymmetry” denotes morphological differences, whereas “polarity” in addition implies developmental consequences. Thus, the mouse oocyte can be considered “asymmetric” but “non-polarized.” The penetration through the zona pellucida is also random, and a significant proportion of sperm binds to the oocyte membrane at a point distant from the zona penetration site. Time-lapse recordings confirmed that sperm swim around the perivitelline space before fertilization. Experimental enlargement of the perivitelline space in the non-polar body half increased the regional probability of fertilization. Based on these experiments, we propose a model in which the space asymmetry exerted by the first polar body and the zona pellucida directs sperm entry preferentially to the polar body half, with no need for oocyte polarity.
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spelling pubmed-14409322006-05-16 Space Asymmetry Directs Preferential Sperm Entry in the Absence of Polarity in the Mouse Oocyte Motosugi, Nami Dietrich, Jens-Erik Polanski, Zbigniew Solter, Davor Hiiragi, Takashi PLoS Biol Research Article Knowledge about the mechanism that establishes embryonic polarity is fundamental in understanding mammalian development. In re-addressing several controversial claims, we recently proposed a model in which mouse embryonic polarity is not specified until the blastocyst stage. Before fertilization, the fully differentiated oocyte has been characterized as “polarized,” and we indeed observed that the sperm preferentially enters the polar body half. Here we show that preferential sperm entry is not due to an intrinsic polarity of the oocyte, since fertilization takes place uniformly when the zona pellucida is removed. We suggest that the term “asymmetry” denotes morphological differences, whereas “polarity” in addition implies developmental consequences. Thus, the mouse oocyte can be considered “asymmetric” but “non-polarized.” The penetration through the zona pellucida is also random, and a significant proportion of sperm binds to the oocyte membrane at a point distant from the zona penetration site. Time-lapse recordings confirmed that sperm swim around the perivitelline space before fertilization. Experimental enlargement of the perivitelline space in the non-polar body half increased the regional probability of fertilization. Based on these experiments, we propose a model in which the space asymmetry exerted by the first polar body and the zona pellucida directs sperm entry preferentially to the polar body half, with no need for oocyte polarity. Public Library of Science 2006-05 2006-04-25 /pmc/articles/PMC1440932/ /pubmed/16620153 http://dx.doi.org/10.1371/journal.pbio.0040135 Text en Copyright: © 2006 Motosugi 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
Motosugi, Nami
Dietrich, Jens-Erik
Polanski, Zbigniew
Solter, Davor
Hiiragi, Takashi
Space Asymmetry Directs Preferential Sperm Entry in the Absence of Polarity in the Mouse Oocyte
title Space Asymmetry Directs Preferential Sperm Entry in the Absence of Polarity in the Mouse Oocyte
title_full Space Asymmetry Directs Preferential Sperm Entry in the Absence of Polarity in the Mouse Oocyte
title_fullStr Space Asymmetry Directs Preferential Sperm Entry in the Absence of Polarity in the Mouse Oocyte
title_full_unstemmed Space Asymmetry Directs Preferential Sperm Entry in the Absence of Polarity in the Mouse Oocyte
title_short Space Asymmetry Directs Preferential Sperm Entry in the Absence of Polarity in the Mouse Oocyte
title_sort space asymmetry directs preferential sperm entry in the absence of polarity in the mouse oocyte
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1440932/
https://www.ncbi.nlm.nih.gov/pubmed/16620153
http://dx.doi.org/10.1371/journal.pbio.0040135
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