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Mps1 Phosphorylates Its N-Terminal Extension to Relieve Autoinhibition and Activate the Spindle Assembly Checkpoint

Monopolar spindle 1 (Mps1) is a conserved apical kinase in the spindle assembly checkpoint (SAC) that ensures accurate segregation of chromosomes during mitosis. Mps1 undergoes extensive auto- and transphosphorylation, but the regulatory and functional consequences of these modifications remain uncl...

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Autores principales: Combes, Guillaume, Barysz, Helena, Garand, Chantal, Gama Braga, Luciano, Alharbi, Ibrahim, Thebault, Philippe, Murakami, Luc, Bryne, Dominic P., Stankovic, Stasa, Eyers, Patrick A., Bolanos-Garcia, Victor M., Earnshaw, William C., Maciejowski, John, Jallepalli, Prasad V., Elowe, Sabine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5863767/
https://www.ncbi.nlm.nih.gov/pubmed/29502948
http://dx.doi.org/10.1016/j.cub.2018.02.002
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author Combes, Guillaume
Barysz, Helena
Garand, Chantal
Gama Braga, Luciano
Alharbi, Ibrahim
Thebault, Philippe
Murakami, Luc
Bryne, Dominic P.
Stankovic, Stasa
Eyers, Patrick A.
Bolanos-Garcia, Victor M.
Earnshaw, William C.
Maciejowski, John
Jallepalli, Prasad V.
Elowe, Sabine
author_facet Combes, Guillaume
Barysz, Helena
Garand, Chantal
Gama Braga, Luciano
Alharbi, Ibrahim
Thebault, Philippe
Murakami, Luc
Bryne, Dominic P.
Stankovic, Stasa
Eyers, Patrick A.
Bolanos-Garcia, Victor M.
Earnshaw, William C.
Maciejowski, John
Jallepalli, Prasad V.
Elowe, Sabine
author_sort Combes, Guillaume
collection PubMed
description Monopolar spindle 1 (Mps1) is a conserved apical kinase in the spindle assembly checkpoint (SAC) that ensures accurate segregation of chromosomes during mitosis. Mps1 undergoes extensive auto- and transphosphorylation, but the regulatory and functional consequences of these modifications remain unclear. Recent findings highlight the importance of intermolecular interactions between the N-terminal extension (NTE) of Mps1 and the Hec1 subunit of the NDC80 complex, which control Mps1 localization at kinetochores and activation of the SAC. Whether the NTE regulates other mitotic functions of Mps1 remains unknown. Here, we report that phosphorylation within the NTE contributes to Mps1 activation through relief of catalytic autoinhibition that is mediated by the NTE itself. Moreover, we find that this regulatory NTE function is independent of its role in Mps1 kinetochore recruitment. We demonstrate that the NTE autoinhibitory mechanism impinges most strongly on Mps1-dependent SAC functions and propose that Mps1 activation likely occurs sequentially through dimerization of a “prone-to-autophosphorylate” Mps1 conformer followed by autophosphorylation of the NTE prior to maximal kinase activation segment trans-autophosphorylation. Our observations underline the importance of autoregulated Mps1 activity in generation and maintenance of a robust SAC in human cells.
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spelling pubmed-58637672018-03-23 Mps1 Phosphorylates Its N-Terminal Extension to Relieve Autoinhibition and Activate the Spindle Assembly Checkpoint Combes, Guillaume Barysz, Helena Garand, Chantal Gama Braga, Luciano Alharbi, Ibrahim Thebault, Philippe Murakami, Luc Bryne, Dominic P. Stankovic, Stasa Eyers, Patrick A. Bolanos-Garcia, Victor M. Earnshaw, William C. Maciejowski, John Jallepalli, Prasad V. Elowe, Sabine Curr Biol Article Monopolar spindle 1 (Mps1) is a conserved apical kinase in the spindle assembly checkpoint (SAC) that ensures accurate segregation of chromosomes during mitosis. Mps1 undergoes extensive auto- and transphosphorylation, but the regulatory and functional consequences of these modifications remain unclear. Recent findings highlight the importance of intermolecular interactions between the N-terminal extension (NTE) of Mps1 and the Hec1 subunit of the NDC80 complex, which control Mps1 localization at kinetochores and activation of the SAC. Whether the NTE regulates other mitotic functions of Mps1 remains unknown. Here, we report that phosphorylation within the NTE contributes to Mps1 activation through relief of catalytic autoinhibition that is mediated by the NTE itself. Moreover, we find that this regulatory NTE function is independent of its role in Mps1 kinetochore recruitment. We demonstrate that the NTE autoinhibitory mechanism impinges most strongly on Mps1-dependent SAC functions and propose that Mps1 activation likely occurs sequentially through dimerization of a “prone-to-autophosphorylate” Mps1 conformer followed by autophosphorylation of the NTE prior to maximal kinase activation segment trans-autophosphorylation. Our observations underline the importance of autoregulated Mps1 activity in generation and maintenance of a robust SAC in human cells. Cell Press 2018-03-19 /pmc/articles/PMC5863767/ /pubmed/29502948 http://dx.doi.org/10.1016/j.cub.2018.02.002 Text en © 2018 The Author(s) http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Combes, Guillaume
Barysz, Helena
Garand, Chantal
Gama Braga, Luciano
Alharbi, Ibrahim
Thebault, Philippe
Murakami, Luc
Bryne, Dominic P.
Stankovic, Stasa
Eyers, Patrick A.
Bolanos-Garcia, Victor M.
Earnshaw, William C.
Maciejowski, John
Jallepalli, Prasad V.
Elowe, Sabine
Mps1 Phosphorylates Its N-Terminal Extension to Relieve Autoinhibition and Activate the Spindle Assembly Checkpoint
title Mps1 Phosphorylates Its N-Terminal Extension to Relieve Autoinhibition and Activate the Spindle Assembly Checkpoint
title_full Mps1 Phosphorylates Its N-Terminal Extension to Relieve Autoinhibition and Activate the Spindle Assembly Checkpoint
title_fullStr Mps1 Phosphorylates Its N-Terminal Extension to Relieve Autoinhibition and Activate the Spindle Assembly Checkpoint
title_full_unstemmed Mps1 Phosphorylates Its N-Terminal Extension to Relieve Autoinhibition and Activate the Spindle Assembly Checkpoint
title_short Mps1 Phosphorylates Its N-Terminal Extension to Relieve Autoinhibition and Activate the Spindle Assembly Checkpoint
title_sort mps1 phosphorylates its n-terminal extension to relieve autoinhibition and activate the spindle assembly checkpoint
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5863767/
https://www.ncbi.nlm.nih.gov/pubmed/29502948
http://dx.doi.org/10.1016/j.cub.2018.02.002
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