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SUMOylation stabilizes sister kinetochore biorientation to allow timely anaphase

During mitosis, sister chromatids attach to microtubules from opposite poles, called biorientation. Sister chromatid cohesion resists microtubule forces, generating tension, which provides the signal that biorientation has occurred. How tension silences the surveillance pathways that prevent cell cy...

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Autores principales: Su, Xue Bessie, Wang, Menglu, Schaffner, Claudia, Nerusheva, Olga O., Clift, Dean, Spanos, Christos, Kelly, David A., Tatham, Michael, Wallek, Andreas, Wu, Yehui, Rappsilber, Juri, Jeyaprakash, A. Arockia, Storchova, Zuzana, Hay, Ronald T., Marston, Adèle L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Rockefeller University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8094117/
https://www.ncbi.nlm.nih.gov/pubmed/33929514
http://dx.doi.org/10.1083/jcb.202005130
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author Su, Xue Bessie
Wang, Menglu
Schaffner, Claudia
Nerusheva, Olga O.
Clift, Dean
Spanos, Christos
Kelly, David A.
Tatham, Michael
Wallek, Andreas
Wu, Yehui
Rappsilber, Juri
Jeyaprakash, A. Arockia
Storchova, Zuzana
Hay, Ronald T.
Marston, Adèle L.
author_facet Su, Xue Bessie
Wang, Menglu
Schaffner, Claudia
Nerusheva, Olga O.
Clift, Dean
Spanos, Christos
Kelly, David A.
Tatham, Michael
Wallek, Andreas
Wu, Yehui
Rappsilber, Juri
Jeyaprakash, A. Arockia
Storchova, Zuzana
Hay, Ronald T.
Marston, Adèle L.
author_sort Su, Xue Bessie
collection PubMed
description During mitosis, sister chromatids attach to microtubules from opposite poles, called biorientation. Sister chromatid cohesion resists microtubule forces, generating tension, which provides the signal that biorientation has occurred. How tension silences the surveillance pathways that prevent cell cycle progression and correct erroneous kinetochore–microtubule attachments remains unclear. Here we show that SUMOylation dampens error correction to allow stable sister kinetochore biorientation and timely anaphase onset. The Siz1/Siz2 SUMO ligases modify the pericentromere-localized shugoshin (Sgo1) protein before its tension-dependent release from chromatin. Sgo1 SUMOylation reduces its binding to protein phosphatase 2A (PP2A), and weakening of this interaction is important for stable biorientation. Unstable biorientation in SUMO-deficient cells is associated with persistence of the chromosome passenger complex (CPC) at centromeres, and SUMOylation of CPC subunit Bir1 also contributes to timely anaphase onset. We propose that SUMOylation acts in a combinatorial manner to facilitate dismantling of the error correction machinery within pericentromeres and thereby sharpen the metaphase–anaphase transition.
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spelling pubmed-80941172021-05-05 SUMOylation stabilizes sister kinetochore biorientation to allow timely anaphase Su, Xue Bessie Wang, Menglu Schaffner, Claudia Nerusheva, Olga O. Clift, Dean Spanos, Christos Kelly, David A. Tatham, Michael Wallek, Andreas Wu, Yehui Rappsilber, Juri Jeyaprakash, A. Arockia Storchova, Zuzana Hay, Ronald T. Marston, Adèle L. J Cell Biol Article During mitosis, sister chromatids attach to microtubules from opposite poles, called biorientation. Sister chromatid cohesion resists microtubule forces, generating tension, which provides the signal that biorientation has occurred. How tension silences the surveillance pathways that prevent cell cycle progression and correct erroneous kinetochore–microtubule attachments remains unclear. Here we show that SUMOylation dampens error correction to allow stable sister kinetochore biorientation and timely anaphase onset. The Siz1/Siz2 SUMO ligases modify the pericentromere-localized shugoshin (Sgo1) protein before its tension-dependent release from chromatin. Sgo1 SUMOylation reduces its binding to protein phosphatase 2A (PP2A), and weakening of this interaction is important for stable biorientation. Unstable biorientation in SUMO-deficient cells is associated with persistence of the chromosome passenger complex (CPC) at centromeres, and SUMOylation of CPC subunit Bir1 also contributes to timely anaphase onset. We propose that SUMOylation acts in a combinatorial manner to facilitate dismantling of the error correction machinery within pericentromeres and thereby sharpen the metaphase–anaphase transition. Rockefeller University Press 2021-04-30 /pmc/articles/PMC8094117/ /pubmed/33929514 http://dx.doi.org/10.1083/jcb.202005130 Text en © 2021 Su et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Su, Xue Bessie
Wang, Menglu
Schaffner, Claudia
Nerusheva, Olga O.
Clift, Dean
Spanos, Christos
Kelly, David A.
Tatham, Michael
Wallek, Andreas
Wu, Yehui
Rappsilber, Juri
Jeyaprakash, A. Arockia
Storchova, Zuzana
Hay, Ronald T.
Marston, Adèle L.
SUMOylation stabilizes sister kinetochore biorientation to allow timely anaphase
title SUMOylation stabilizes sister kinetochore biorientation to allow timely anaphase
title_full SUMOylation stabilizes sister kinetochore biorientation to allow timely anaphase
title_fullStr SUMOylation stabilizes sister kinetochore biorientation to allow timely anaphase
title_full_unstemmed SUMOylation stabilizes sister kinetochore biorientation to allow timely anaphase
title_short SUMOylation stabilizes sister kinetochore biorientation to allow timely anaphase
title_sort sumoylation stabilizes sister kinetochore biorientation to allow timely anaphase
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8094117/
https://www.ncbi.nlm.nih.gov/pubmed/33929514
http://dx.doi.org/10.1083/jcb.202005130
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