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Timely Endocytosis of Cytokinetic Enzymes Prevents Premature Spindle Breakage during Mitotic Exit

Cytokinesis requires the spatio-temporal coordination of membrane deposition and primary septum (PS) formation at the division site to drive acto-myosin ring (AMR) constriction. It has been demonstrated that AMR constriction invariably occurs only after the mitotic spindle disassembly. It has also b...

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Detalles Bibliográficos
Autores principales: Chin, Cheen Fei, Tan, Kaiquan, Onishi, Masayuki, Chew, YuanYuan, Augustine, Beryl, Lee, Wei Ren, Yeong, Foong May
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4957831/
https://www.ncbi.nlm.nih.gov/pubmed/27447488
http://dx.doi.org/10.1371/journal.pgen.1006195
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author Chin, Cheen Fei
Tan, Kaiquan
Onishi, Masayuki
Chew, YuanYuan
Augustine, Beryl
Lee, Wei Ren
Yeong, Foong May
author_facet Chin, Cheen Fei
Tan, Kaiquan
Onishi, Masayuki
Chew, YuanYuan
Augustine, Beryl
Lee, Wei Ren
Yeong, Foong May
author_sort Chin, Cheen Fei
collection PubMed
description Cytokinesis requires the spatio-temporal coordination of membrane deposition and primary septum (PS) formation at the division site to drive acto-myosin ring (AMR) constriction. It has been demonstrated that AMR constriction invariably occurs only after the mitotic spindle disassembly. It has also been established that Chitin Synthase II (Chs2p) neck localization precedes mitotic spindle disassembly during mitotic exit. As AMR constriction depends upon PS formation, the question arises as to how chitin deposition is regulated so as to prevent premature AMR constriction and mitotic spindle breakage. In this study, we propose that cells regulate the coordination between spindle disassembly and AMR constriction via timely endocytosis of cytokinetic enzymes, Chs2p, Chs3p, and Fks1p. Inhibition of endocytosis leads to over accumulation of cytokinetic enzymes during mitotic exit, which accelerates the constriction of the AMR, and causes spindle breakage that eventually could contribute to monopolar spindle formation in the subsequent round of cell division. Intriguingly, the mitotic spindle breakage observed in endocytosis mutants can be rescued either by deleting or inhibiting the activities of, CHS2, CHS3 and FKS1, which are involved in septum formation. The findings from our study highlight the importance of timely endocytosis of cytokinetic enzymes at the division site in safeguarding mitotic spindle integrity during mitotic exit.
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spelling pubmed-49578312016-08-08 Timely Endocytosis of Cytokinetic Enzymes Prevents Premature Spindle Breakage during Mitotic Exit Chin, Cheen Fei Tan, Kaiquan Onishi, Masayuki Chew, YuanYuan Augustine, Beryl Lee, Wei Ren Yeong, Foong May PLoS Genet Research Article Cytokinesis requires the spatio-temporal coordination of membrane deposition and primary septum (PS) formation at the division site to drive acto-myosin ring (AMR) constriction. It has been demonstrated that AMR constriction invariably occurs only after the mitotic spindle disassembly. It has also been established that Chitin Synthase II (Chs2p) neck localization precedes mitotic spindle disassembly during mitotic exit. As AMR constriction depends upon PS formation, the question arises as to how chitin deposition is regulated so as to prevent premature AMR constriction and mitotic spindle breakage. In this study, we propose that cells regulate the coordination between spindle disassembly and AMR constriction via timely endocytosis of cytokinetic enzymes, Chs2p, Chs3p, and Fks1p. Inhibition of endocytosis leads to over accumulation of cytokinetic enzymes during mitotic exit, which accelerates the constriction of the AMR, and causes spindle breakage that eventually could contribute to monopolar spindle formation in the subsequent round of cell division. Intriguingly, the mitotic spindle breakage observed in endocytosis mutants can be rescued either by deleting or inhibiting the activities of, CHS2, CHS3 and FKS1, which are involved in septum formation. The findings from our study highlight the importance of timely endocytosis of cytokinetic enzymes at the division site in safeguarding mitotic spindle integrity during mitotic exit. Public Library of Science 2016-07-22 /pmc/articles/PMC4957831/ /pubmed/27447488 http://dx.doi.org/10.1371/journal.pgen.1006195 Text en © 2016 Chin 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Chin, Cheen Fei
Tan, Kaiquan
Onishi, Masayuki
Chew, YuanYuan
Augustine, Beryl
Lee, Wei Ren
Yeong, Foong May
Timely Endocytosis of Cytokinetic Enzymes Prevents Premature Spindle Breakage during Mitotic Exit
title Timely Endocytosis of Cytokinetic Enzymes Prevents Premature Spindle Breakage during Mitotic Exit
title_full Timely Endocytosis of Cytokinetic Enzymes Prevents Premature Spindle Breakage during Mitotic Exit
title_fullStr Timely Endocytosis of Cytokinetic Enzymes Prevents Premature Spindle Breakage during Mitotic Exit
title_full_unstemmed Timely Endocytosis of Cytokinetic Enzymes Prevents Premature Spindle Breakage during Mitotic Exit
title_short Timely Endocytosis of Cytokinetic Enzymes Prevents Premature Spindle Breakage during Mitotic Exit
title_sort timely endocytosis of cytokinetic enzymes prevents premature spindle breakage during mitotic exit
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4957831/
https://www.ncbi.nlm.nih.gov/pubmed/27447488
http://dx.doi.org/10.1371/journal.pgen.1006195
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