TRIP13 and APC15 drive mitotic exit by turnover of interphase- and unattached kinetochore-produced MCC

The mitotic checkpoint complex (MCC) is assembled during both mitosis and interphase. Here, the authors use auxin-inducible degron tags to rapidly degrade TRIP13 and find that mitotic exit requires MCC disassembly by TRIP13-catalyzed removal of Mad2 or APC1-driven ubiquitination of Cdc20.

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Autores principales: Dong Hyun Kim, Joo Seok Han, Peter Ly, Qiaozhen Ye, Moira A. McMahon, Kyungjae Myung, Kevin D. Corbett, Don W. Cleveland
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/004fb7b590f04129989b8ca5e5d620a7
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spelling oai:doaj.org-article:004fb7b590f04129989b8ca5e5d620a72021-12-02T17:33:03ZTRIP13 and APC15 drive mitotic exit by turnover of interphase- and unattached kinetochore-produced MCC10.1038/s41467-018-06774-12041-1723https://doaj.org/article/004fb7b590f04129989b8ca5e5d620a72018-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-06774-1https://doaj.org/toc/2041-1723The mitotic checkpoint complex (MCC) is assembled during both mitosis and interphase. Here, the authors use auxin-inducible degron tags to rapidly degrade TRIP13 and find that mitotic exit requires MCC disassembly by TRIP13-catalyzed removal of Mad2 or APC1-driven ubiquitination of Cdc20.Dong Hyun KimJoo Seok HanPeter LyQiaozhen YeMoira A. McMahonKyungjae MyungKevin D. CorbettDon W. ClevelandNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-11 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Dong Hyun Kim
Joo Seok Han
Peter Ly
Qiaozhen Ye
Moira A. McMahon
Kyungjae Myung
Kevin D. Corbett
Don W. Cleveland
TRIP13 and APC15 drive mitotic exit by turnover of interphase- and unattached kinetochore-produced MCC
description The mitotic checkpoint complex (MCC) is assembled during both mitosis and interphase. Here, the authors use auxin-inducible degron tags to rapidly degrade TRIP13 and find that mitotic exit requires MCC disassembly by TRIP13-catalyzed removal of Mad2 or APC1-driven ubiquitination of Cdc20.
format article
author Dong Hyun Kim
Joo Seok Han
Peter Ly
Qiaozhen Ye
Moira A. McMahon
Kyungjae Myung
Kevin D. Corbett
Don W. Cleveland
author_facet Dong Hyun Kim
Joo Seok Han
Peter Ly
Qiaozhen Ye
Moira A. McMahon
Kyungjae Myung
Kevin D. Corbett
Don W. Cleveland
author_sort Dong Hyun Kim
title TRIP13 and APC15 drive mitotic exit by turnover of interphase- and unattached kinetochore-produced MCC
title_short TRIP13 and APC15 drive mitotic exit by turnover of interphase- and unattached kinetochore-produced MCC
title_full TRIP13 and APC15 drive mitotic exit by turnover of interphase- and unattached kinetochore-produced MCC
title_fullStr TRIP13 and APC15 drive mitotic exit by turnover of interphase- and unattached kinetochore-produced MCC
title_full_unstemmed TRIP13 and APC15 drive mitotic exit by turnover of interphase- and unattached kinetochore-produced MCC
title_sort trip13 and apc15 drive mitotic exit by turnover of interphase- and unattached kinetochore-produced mcc
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/004fb7b590f04129989b8ca5e5d620a7
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