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Multiscale analysis of single and double maternal-zygotic Myh9 and Myh10 mutants during mouse preimplantation development

During the first days of mammalian development, the embryo forms the blastocyst, the structure responsible for implanting the mammalian embryo. Consisting of an epithelium enveloping the pluripotent inner cell mass and a fluid-filled lumen, the blastocyst results from a series of cleavage divisions,...

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Autores principales: Schliffka, Markus Frederik, Tortorelli, Anna Francesca, Özgüç, Özge, de Plater, Ludmilla, Polzer, Oliver, Pelzer, Diane, Maître, Jean-Léon
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8096435/
https://www.ncbi.nlm.nih.gov/pubmed/33871354
http://dx.doi.org/10.7554/eLife.68536
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author Schliffka, Markus Frederik
Tortorelli, Anna Francesca
Özgüç, Özge
de Plater, Ludmilla
Polzer, Oliver
Pelzer, Diane
Maître, Jean-Léon
author_facet Schliffka, Markus Frederik
Tortorelli, Anna Francesca
Özgüç, Özge
de Plater, Ludmilla
Polzer, Oliver
Pelzer, Diane
Maître, Jean-Léon
author_sort Schliffka, Markus Frederik
collection PubMed
description During the first days of mammalian development, the embryo forms the blastocyst, the structure responsible for implanting the mammalian embryo. Consisting of an epithelium enveloping the pluripotent inner cell mass and a fluid-filled lumen, the blastocyst results from a series of cleavage divisions, morphogenetic movements, and lineage specification. Recent studies have identified the essential role of actomyosin contractility in driving cytokinesis, morphogenesis, and fate specification, leading to the formation of the blastocyst. However, the preimplantation development of contractility mutants has not been characterized. Here, we generated single and double maternal-zygotic mutants of non-muscle myosin II heavy chains (NMHCs) to characterize them with multiscale imaging. We found that Myh9 (NMHC II-A) is the major NMHC during preimplantation development as its maternal-zygotic loss causes failed cytokinesis, increased duration of the cell cycle, weaker embryo compaction, and reduced differentiation, whereas Myh10 (NMHC II-B) maternal-zygotic loss is much less severe. Double maternal-zygotic mutants for Myh9 and Myh10 show a much stronger phenotype, failing most of the attempts of cytokinesis. We found that morphogenesis and fate specification are affected but nevertheless carry on in a timely fashion, regardless of the impact of the mutations on cell number. Strikingly, even when all cell divisions fail, the resulting single-celled embryo can initiate trophectoderm differentiation and lumen formation by accumulating fluid in increasingly large vacuoles. Therefore, contractility mutants reveal that fluid accumulation is a cell-autonomous process and that the preimplantation program carries on independently of successful cell division.
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spelling pubmed-80964352021-05-06 Multiscale analysis of single and double maternal-zygotic Myh9 and Myh10 mutants during mouse preimplantation development Schliffka, Markus Frederik Tortorelli, Anna Francesca Özgüç, Özge de Plater, Ludmilla Polzer, Oliver Pelzer, Diane Maître, Jean-Léon eLife Developmental Biology During the first days of mammalian development, the embryo forms the blastocyst, the structure responsible for implanting the mammalian embryo. Consisting of an epithelium enveloping the pluripotent inner cell mass and a fluid-filled lumen, the blastocyst results from a series of cleavage divisions, morphogenetic movements, and lineage specification. Recent studies have identified the essential role of actomyosin contractility in driving cytokinesis, morphogenesis, and fate specification, leading to the formation of the blastocyst. However, the preimplantation development of contractility mutants has not been characterized. Here, we generated single and double maternal-zygotic mutants of non-muscle myosin II heavy chains (NMHCs) to characterize them with multiscale imaging. We found that Myh9 (NMHC II-A) is the major NMHC during preimplantation development as its maternal-zygotic loss causes failed cytokinesis, increased duration of the cell cycle, weaker embryo compaction, and reduced differentiation, whereas Myh10 (NMHC II-B) maternal-zygotic loss is much less severe. Double maternal-zygotic mutants for Myh9 and Myh10 show a much stronger phenotype, failing most of the attempts of cytokinesis. We found that morphogenesis and fate specification are affected but nevertheless carry on in a timely fashion, regardless of the impact of the mutations on cell number. Strikingly, even when all cell divisions fail, the resulting single-celled embryo can initiate trophectoderm differentiation and lumen formation by accumulating fluid in increasingly large vacuoles. Therefore, contractility mutants reveal that fluid accumulation is a cell-autonomous process and that the preimplantation program carries on independently of successful cell division. eLife Sciences Publications, Ltd 2021-04-19 /pmc/articles/PMC8096435/ /pubmed/33871354 http://dx.doi.org/10.7554/eLife.68536 Text en © 2021, Schliffka et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Developmental Biology
Schliffka, Markus Frederik
Tortorelli, Anna Francesca
Özgüç, Özge
de Plater, Ludmilla
Polzer, Oliver
Pelzer, Diane
Maître, Jean-Léon
Multiscale analysis of single and double maternal-zygotic Myh9 and Myh10 mutants during mouse preimplantation development
title Multiscale analysis of single and double maternal-zygotic Myh9 and Myh10 mutants during mouse preimplantation development
title_full Multiscale analysis of single and double maternal-zygotic Myh9 and Myh10 mutants during mouse preimplantation development
title_fullStr Multiscale analysis of single and double maternal-zygotic Myh9 and Myh10 mutants during mouse preimplantation development
title_full_unstemmed Multiscale analysis of single and double maternal-zygotic Myh9 and Myh10 mutants during mouse preimplantation development
title_short Multiscale analysis of single and double maternal-zygotic Myh9 and Myh10 mutants during mouse preimplantation development
title_sort multiscale analysis of single and double maternal-zygotic myh9 and myh10 mutants during mouse preimplantation development
topic Developmental Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8096435/
https://www.ncbi.nlm.nih.gov/pubmed/33871354
http://dx.doi.org/10.7554/eLife.68536
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