Literature DB >> 3512332

The cytoskeleton, endocytosis and cell polarity in the mouse preimplantation embryo.

T P Fleming, P M Cannon, S J Pickering.   

Abstract

The process of cell polarization in mouse 8-cell embryos includes the formation of a polar cluster of cytoplasmic endocytotic organelles (endosomes) subjacent to an apical surface pole of microvilli. A similar polar morphology, supplemented by basally localized secondary lysosomes, is evident following division to the 16-cell stage in outside blastomeres, precursors of the trophectodermal lineage. The roles of microfilaments and microtubules in generating and stabilizing endocytotic and surface features of polarity (visualized by horseradish peroxidase incubation and indirect immunofluorescence labeling, respectively) have been evaluated by exposure of 8- and 16-cell embryos and 8-cell couplets to drugs (cytochalasin D, colcemid, nocodazole) that disrupt the cytoskeleton. The generation of endocytotic polarity is dependent upon intact microtubules and microfilaments, but the newly established endocytotic pole in blastomeres from compacted 8-cell embryos appears to be stabilized exclusively by microtubules. Polarized endocytotic organelles at the 16-cell stage are more resistant to drug treatment than at the 8-cell stage (probably due to microfilament interactions) indicating a maturation phase in the polar cell lineage. Microtubules are also responsible for the orientation of endocytotic clusters along the cell's axis of polarity. In contrast, the generation and stability of polarity at the cell surface appears relatively independent of cytoskeletal integrity. The results are discussed in relation to the mechanisms that may control the development and stabilization of polarization during cleavage.

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Year:  1986        PMID: 3512332     DOI: 10.1016/0012-1606(86)90175-2

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  10 in total

1.  Dynamic changes in leptin distribution in the progression from ovum to blastocyst of the pre-implantation mouse embryo.

Authors:  Laura C Schulz; R Michael Roberts
Journal:  Reproduction       Date:  2011-03-28       Impact factor: 3.906

2.  A putative endosomal t-SNARE links exo- and endocytosis in the phytopathogenic fungus Ustilago maydis.

Authors:  R Wedlich-Söldner; M Bölker; R Kahmann; G Steinberg
Journal:  EMBO J       Date:  2000-05-02       Impact factor: 11.598

Review 3.  Principles of Self-Organization of the Mammalian Embryo.

Authors:  Meng Zhu; Magdalena Zernicka-Goetz
Journal:  Cell       Date:  2020-12-10       Impact factor: 41.582

4.  Developmental clock and mechanism of de novo polarization of the mouse embryo.

Authors:  Meng Zhu; Jake Cornwall-Scoones; Peizhe Wang; Charlotte E Handford; Jie Na; Matt Thomson; Magdalena Zernicka-Goetz
Journal:  Science       Date:  2020-12-11       Impact factor: 47.728

5.  Gap junction assembly in the preimplantation mouse conceptus is independent of microtubules, microfilaments, cell flattening, and cytokinesis.

Authors:  G M Kidder; J Rains; J McKeon
Journal:  Proc Natl Acad Sci U S A       Date:  1987-06       Impact factor: 11.205

6.  Redistribution of microtubules and pericentriolar material during the development of polarity in mouse blastomeres.

Authors:  E Houliston; S J Pickering; B Maro
Journal:  J Cell Biol       Date:  1987-05       Impact factor: 10.539

7.  Posttranslational modification of distinct microtubule subpopulations during cell polarization and differentiation in the mouse preimplantation embryo.

Authors:  E Houliston; B Maro
Journal:  J Cell Biol       Date:  1989-02       Impact factor: 10.539

8.  Actomyosin polarisation through PLC-PKC triggers symmetry breaking of the mouse embryo.

Authors:  Meng Zhu; Chuen Yan Leung; Marta N Shahbazi; Magdalena Zernicka-Goetz
Journal:  Nat Commun       Date:  2017-10-13       Impact factor: 14.919

9.  Stain-free detection of embryo polarization using deep learning.

Authors:  Cheng Shen; Adiyant Lamba; Meng Zhu; Ray Zhang; Magdalena Zernicka-Goetz; Changhuei Yang
Journal:  Sci Rep       Date:  2022-02-14       Impact factor: 4.379

10.  Development of tight junctions de novo in the mouse early embryo: control of assembly of the tight junction-specific protein, ZO-1.

Authors:  T P Fleming; J McConnell; M H Johnson; B R Stevenson
Journal:  J Cell Biol       Date:  1989-04       Impact factor: 10.539

  10 in total

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