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Building the cytokinetic contractile ring in an early embryo: Initiation as clusters of myosin II, anillin and septin, and visualization of a septin filament network

The cytokinetic contractile ring (CR) was first described some 50 years ago, however our understanding of the assembly and structure of the animal cell CR remains incomplete. We recently reported that mature CRs in sea urchin embryos contain myosin II mini-filaments organized into aligned concatenat...

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Autores principales: Garno, Chelsea, Irons, Zoe H., Gamache, Courtney M., McKim, Quenelle, Reyes, Gabriela, Wu, Xufeng, Shuster, Charles B., Henson, John H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8714119/
https://www.ncbi.nlm.nih.gov/pubmed/34962917
http://dx.doi.org/10.1371/journal.pone.0252845
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author Garno, Chelsea
Irons, Zoe H.
Gamache, Courtney M.
McKim, Quenelle
Reyes, Gabriela
Wu, Xufeng
Shuster, Charles B.
Henson, John H.
author_facet Garno, Chelsea
Irons, Zoe H.
Gamache, Courtney M.
McKim, Quenelle
Reyes, Gabriela
Wu, Xufeng
Shuster, Charles B.
Henson, John H.
author_sort Garno, Chelsea
collection PubMed
description The cytokinetic contractile ring (CR) was first described some 50 years ago, however our understanding of the assembly and structure of the animal cell CR remains incomplete. We recently reported that mature CRs in sea urchin embryos contain myosin II mini-filaments organized into aligned concatenated arrays, and that in early CRs myosin II formed discrete clusters that transformed into the linearized structure over time. The present study extends our previous work by addressing the hypothesis that these myosin II clusters also contain the crucial scaffolding proteins anillin and septin, known to help link actin, myosin II, RhoA, and the membrane during cytokinesis. Super-resolution imaging of cortices from dividing embryos indicates that within each cluster, anillin and septin2 occupy a centralized position relative to the myosin II mini-filaments. As CR formation progresses, the myosin II, septin and anillin containing clusters enlarge and coalesce into patchy and faintly linear patterns. Our super-resolution images provide the initial visualization of anillin and septin nanostructure within an animal cell CR, including evidence of a septin filament-like network. Furthermore, Latrunculin-treated embryos indicated that the localization of septin or anillin to the myosin II clusters in the early CR was not dependent on actin filaments. These results highlight the structural progression of the CR in sea urchin embryos from an array of clusters to a linearized purse string, the association of anillin and septin with this process, and provide the visualization of an apparent septin filament network with the CR structure of an animal cell.
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spelling pubmed-87141192021-12-29 Building the cytokinetic contractile ring in an early embryo: Initiation as clusters of myosin II, anillin and septin, and visualization of a septin filament network Garno, Chelsea Irons, Zoe H. Gamache, Courtney M. McKim, Quenelle Reyes, Gabriela Wu, Xufeng Shuster, Charles B. Henson, John H. PLoS One Research Article The cytokinetic contractile ring (CR) was first described some 50 years ago, however our understanding of the assembly and structure of the animal cell CR remains incomplete. We recently reported that mature CRs in sea urchin embryos contain myosin II mini-filaments organized into aligned concatenated arrays, and that in early CRs myosin II formed discrete clusters that transformed into the linearized structure over time. The present study extends our previous work by addressing the hypothesis that these myosin II clusters also contain the crucial scaffolding proteins anillin and septin, known to help link actin, myosin II, RhoA, and the membrane during cytokinesis. Super-resolution imaging of cortices from dividing embryos indicates that within each cluster, anillin and septin2 occupy a centralized position relative to the myosin II mini-filaments. As CR formation progresses, the myosin II, septin and anillin containing clusters enlarge and coalesce into patchy and faintly linear patterns. Our super-resolution images provide the initial visualization of anillin and septin nanostructure within an animal cell CR, including evidence of a septin filament-like network. Furthermore, Latrunculin-treated embryos indicated that the localization of septin or anillin to the myosin II clusters in the early CR was not dependent on actin filaments. These results highlight the structural progression of the CR in sea urchin embryos from an array of clusters to a linearized purse string, the association of anillin and septin with this process, and provide the visualization of an apparent septin filament network with the CR structure of an animal cell. Public Library of Science 2021-12-28 /pmc/articles/PMC8714119/ /pubmed/34962917 http://dx.doi.org/10.1371/journal.pone.0252845 Text en https://creativecommons.org/publicdomain/zero/1.0/This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Garno, Chelsea
Irons, Zoe H.
Gamache, Courtney M.
McKim, Quenelle
Reyes, Gabriela
Wu, Xufeng
Shuster, Charles B.
Henson, John H.
Building the cytokinetic contractile ring in an early embryo: Initiation as clusters of myosin II, anillin and septin, and visualization of a septin filament network
title Building the cytokinetic contractile ring in an early embryo: Initiation as clusters of myosin II, anillin and septin, and visualization of a septin filament network
title_full Building the cytokinetic contractile ring in an early embryo: Initiation as clusters of myosin II, anillin and septin, and visualization of a septin filament network
title_fullStr Building the cytokinetic contractile ring in an early embryo: Initiation as clusters of myosin II, anillin and septin, and visualization of a septin filament network
title_full_unstemmed Building the cytokinetic contractile ring in an early embryo: Initiation as clusters of myosin II, anillin and septin, and visualization of a septin filament network
title_short Building the cytokinetic contractile ring in an early embryo: Initiation as clusters of myosin II, anillin and septin, and visualization of a septin filament network
title_sort building the cytokinetic contractile ring in an early embryo: initiation as clusters of myosin ii, anillin and septin, and visualization of a septin filament network
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8714119/
https://www.ncbi.nlm.nih.gov/pubmed/34962917
http://dx.doi.org/10.1371/journal.pone.0252845
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