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ALIX and ESCRT-III Coordinately Control Cytokinetic Abscission during Germline Stem Cell Division In Vivo

Abscission is the final step of cytokinesis that involves the cleavage of the intercellular bridge connecting the two daughter cells. Recent studies have given novel insight into the spatiotemporal regulation and molecular mechanisms controlling abscission in cultured yeast and human cells. The mech...

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Autores principales: Eikenes, Åsmund H., Malerød, Lene, Christensen, Anette Lie, Steen, Chloé B., Mathieu, Juliette, Nezis, Ioannis P., Liestøl, Knut, Huynh, Jean-René, Stenmark, Harald, Haglund, Kaisa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4312039/
https://www.ncbi.nlm.nih.gov/pubmed/25635693
http://dx.doi.org/10.1371/journal.pgen.1004904
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author Eikenes, Åsmund H.
Malerød, Lene
Christensen, Anette Lie
Steen, Chloé B.
Mathieu, Juliette
Nezis, Ioannis P.
Liestøl, Knut
Huynh, Jean-René
Stenmark, Harald
Haglund, Kaisa
author_facet Eikenes, Åsmund H.
Malerød, Lene
Christensen, Anette Lie
Steen, Chloé B.
Mathieu, Juliette
Nezis, Ioannis P.
Liestøl, Knut
Huynh, Jean-René
Stenmark, Harald
Haglund, Kaisa
author_sort Eikenes, Åsmund H.
collection PubMed
description Abscission is the final step of cytokinesis that involves the cleavage of the intercellular bridge connecting the two daughter cells. Recent studies have given novel insight into the spatiotemporal regulation and molecular mechanisms controlling abscission in cultured yeast and human cells. The mechanisms of abscission in living metazoan tissues are however not well understood. Here we show that ALIX and the ESCRT-III component Shrub are required for completion of abscission during Drosophila female germline stem cell (fGSC) division. Loss of ALIX or Shrub function in fGSCs leads to delayed abscission and the consequent formation of stem cysts in which chains of daughter cells remain interconnected to the fGSC via midbody rings and fusome. We demonstrate that ALIX and Shrub interact and that they co-localize at midbody rings and midbodies during cytokinetic abscission in fGSCs. Mechanistically, we show that the direct interaction between ALIX and Shrub is required to ensure cytokinesis completion with normal kinetics in fGSCs. We conclude that ALIX and ESCRT-III coordinately control abscission in Drosophila fGSCs and that their complex formation is required for accurate abscission timing in GSCs in vivo.
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spelling pubmed-43120392015-02-13 ALIX and ESCRT-III Coordinately Control Cytokinetic Abscission during Germline Stem Cell Division In Vivo Eikenes, Åsmund H. Malerød, Lene Christensen, Anette Lie Steen, Chloé B. Mathieu, Juliette Nezis, Ioannis P. Liestøl, Knut Huynh, Jean-René Stenmark, Harald Haglund, Kaisa PLoS Genet Research Article Abscission is the final step of cytokinesis that involves the cleavage of the intercellular bridge connecting the two daughter cells. Recent studies have given novel insight into the spatiotemporal regulation and molecular mechanisms controlling abscission in cultured yeast and human cells. The mechanisms of abscission in living metazoan tissues are however not well understood. Here we show that ALIX and the ESCRT-III component Shrub are required for completion of abscission during Drosophila female germline stem cell (fGSC) division. Loss of ALIX or Shrub function in fGSCs leads to delayed abscission and the consequent formation of stem cysts in which chains of daughter cells remain interconnected to the fGSC via midbody rings and fusome. We demonstrate that ALIX and Shrub interact and that they co-localize at midbody rings and midbodies during cytokinetic abscission in fGSCs. Mechanistically, we show that the direct interaction between ALIX and Shrub is required to ensure cytokinesis completion with normal kinetics in fGSCs. We conclude that ALIX and ESCRT-III coordinately control abscission in Drosophila fGSCs and that their complex formation is required for accurate abscission timing in GSCs in vivo. Public Library of Science 2015-01-30 /pmc/articles/PMC4312039/ /pubmed/25635693 http://dx.doi.org/10.1371/journal.pgen.1004904 Text en © 2015 Eikenes 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
Eikenes, Åsmund H.
Malerød, Lene
Christensen, Anette Lie
Steen, Chloé B.
Mathieu, Juliette
Nezis, Ioannis P.
Liestøl, Knut
Huynh, Jean-René
Stenmark, Harald
Haglund, Kaisa
ALIX and ESCRT-III Coordinately Control Cytokinetic Abscission during Germline Stem Cell Division In Vivo
title ALIX and ESCRT-III Coordinately Control Cytokinetic Abscission during Germline Stem Cell Division In Vivo
title_full ALIX and ESCRT-III Coordinately Control Cytokinetic Abscission during Germline Stem Cell Division In Vivo
title_fullStr ALIX and ESCRT-III Coordinately Control Cytokinetic Abscission during Germline Stem Cell Division In Vivo
title_full_unstemmed ALIX and ESCRT-III Coordinately Control Cytokinetic Abscission during Germline Stem Cell Division In Vivo
title_short ALIX and ESCRT-III Coordinately Control Cytokinetic Abscission during Germline Stem Cell Division In Vivo
title_sort alix and escrt-iii coordinately control cytokinetic abscission during germline stem cell division in vivo
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4312039/
https://www.ncbi.nlm.nih.gov/pubmed/25635693
http://dx.doi.org/10.1371/journal.pgen.1004904
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