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Basis of catalytic assembly of the mitotic checkpoint complex

Accurate genome inheritance by daughter cells requires that sister chromatids in the mother attach to microtubules emanating from opposite poles of the mitotic spindle (bi-orientation). A surveillance mechanism named the spindle assembly checkpoint (SAC) monitors the microtubule attachment process,...

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Autores principales: Faesen, Alex C., Thanasoula, Maria, Maffini, Stefano, Breit, Claudia, Müller, Franziska, van Gerwen, Suzan, Bange, Tanja, Musacchio, Andrea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5448665/
https://www.ncbi.nlm.nih.gov/pubmed/28102834
http://dx.doi.org/10.1038/nature21384
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author Faesen, Alex C.
Thanasoula, Maria
Maffini, Stefano
Breit, Claudia
Müller, Franziska
van Gerwen, Suzan
Bange, Tanja
Musacchio, Andrea
author_facet Faesen, Alex C.
Thanasoula, Maria
Maffini, Stefano
Breit, Claudia
Müller, Franziska
van Gerwen, Suzan
Bange, Tanja
Musacchio, Andrea
author_sort Faesen, Alex C.
collection PubMed
description Accurate genome inheritance by daughter cells requires that sister chromatids in the mother attach to microtubules emanating from opposite poles of the mitotic spindle (bi-orientation). A surveillance mechanism named the spindle assembly checkpoint (SAC) monitors the microtubule attachment process, temporarily halting sister chromatid separation and mitotic exit until completion of bi-orientation1. SAC failure results in abnormal chromosome numbers (aneuploidy), a hallmark of many tumours. The HORMA domain protein MAD2 is a subunit of the SAC effector mitotic checkpoint complex (MCC). Structural conversion from open to closed MAD2 is required for MAD2 incorporation in MCC1. In vitro, MAD2 conversion and MCC assembly requires several hours2–4, while the SAC response in cells is established in a few minutes5–7. To address this discrepancy, we reconstituted with purified components a near-complete SAC signalling system and monitored MCC assembly with real-time sensors. Dramatic acceleration of MAD2 conversion and MCC assembly was observed when MPS1 phosphorylated the MAD1:MAD2 complex, triggering its template function in the MAD2 conversion and contributing to the establishment of a physical platform for MCC assembly. Thus, catalytic activation of the SAC depends on regulated protein-protein interactions that accelerate the spontaneous but rate-limiting conversion of MAD2 required for MCC assembly.
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spelling pubmed-54486652017-07-19 Basis of catalytic assembly of the mitotic checkpoint complex Faesen, Alex C. Thanasoula, Maria Maffini, Stefano Breit, Claudia Müller, Franziska van Gerwen, Suzan Bange, Tanja Musacchio, Andrea Nature Article Accurate genome inheritance by daughter cells requires that sister chromatids in the mother attach to microtubules emanating from opposite poles of the mitotic spindle (bi-orientation). A surveillance mechanism named the spindle assembly checkpoint (SAC) monitors the microtubule attachment process, temporarily halting sister chromatid separation and mitotic exit until completion of bi-orientation1. SAC failure results in abnormal chromosome numbers (aneuploidy), a hallmark of many tumours. The HORMA domain protein MAD2 is a subunit of the SAC effector mitotic checkpoint complex (MCC). Structural conversion from open to closed MAD2 is required for MAD2 incorporation in MCC1. In vitro, MAD2 conversion and MCC assembly requires several hours2–4, while the SAC response in cells is established in a few minutes5–7. To address this discrepancy, we reconstituted with purified components a near-complete SAC signalling system and monitored MCC assembly with real-time sensors. Dramatic acceleration of MAD2 conversion and MCC assembly was observed when MPS1 phosphorylated the MAD1:MAD2 complex, triggering its template function in the MAD2 conversion and contributing to the establishment of a physical platform for MCC assembly. Thus, catalytic activation of the SAC depends on regulated protein-protein interactions that accelerate the spontaneous but rate-limiting conversion of MAD2 required for MCC assembly. 2017-01-19 2017-02-23 /pmc/articles/PMC5448665/ /pubmed/28102834 http://dx.doi.org/10.1038/nature21384 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Faesen, Alex C.
Thanasoula, Maria
Maffini, Stefano
Breit, Claudia
Müller, Franziska
van Gerwen, Suzan
Bange, Tanja
Musacchio, Andrea
Basis of catalytic assembly of the mitotic checkpoint complex
title Basis of catalytic assembly of the mitotic checkpoint complex
title_full Basis of catalytic assembly of the mitotic checkpoint complex
title_fullStr Basis of catalytic assembly of the mitotic checkpoint complex
title_full_unstemmed Basis of catalytic assembly of the mitotic checkpoint complex
title_short Basis of catalytic assembly of the mitotic checkpoint complex
title_sort basis of catalytic assembly of the mitotic checkpoint complex
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5448665/
https://www.ncbi.nlm.nih.gov/pubmed/28102834
http://dx.doi.org/10.1038/nature21384
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