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CDK1 controls CHMP7-dependent nuclear envelope reformation

Through membrane sealing and disassembly of spindle microtubules, the Endosomal Sorting Complex Required for Transport-III (ESCRT-III) machinery has emerged as a key player in the regeneration of a sealed nuclear envelope (NE) during mitotic exit, and in the repair of this organelle during interphas...

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Autores principales: Gatta, Alberto T, Olmos, Yolanda, Stoten, Caroline L, Chen, Qu, Rosenthal, Peter B, Carlton, Jeremy G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8324300/
https://www.ncbi.nlm.nih.gov/pubmed/34286694
http://dx.doi.org/10.7554/eLife.59999
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author Gatta, Alberto T
Olmos, Yolanda
Stoten, Caroline L
Chen, Qu
Rosenthal, Peter B
Carlton, Jeremy G
author_facet Gatta, Alberto T
Olmos, Yolanda
Stoten, Caroline L
Chen, Qu
Rosenthal, Peter B
Carlton, Jeremy G
author_sort Gatta, Alberto T
collection PubMed
description Through membrane sealing and disassembly of spindle microtubules, the Endosomal Sorting Complex Required for Transport-III (ESCRT-III) machinery has emerged as a key player in the regeneration of a sealed nuclear envelope (NE) during mitotic exit, and in the repair of this organelle during interphase rupture. ESCRT-III assembly at the NE occurs transiently during mitotic (M) exit and is initiated when CHMP7, an ER-localised ESCRT-II/ESCRT-III hybrid protein, interacts with the Inner Nuclear Membrane (INM) protein LEM2. Whilst classical nucleocytoplasmic transport mechanisms have been proposed to separate LEM2 and CHMP7 during interphase, it is unclear how CHMP7 assembly is suppressed in mitosis when NE and ER identities are mixed. Here, we use live cell imaging and protein biochemistry to examine the biology of these proteins during M-exit. Firstly, we show that CHMP7 plays an important role in the dissolution of LEM2 clusters that form at the NE during M-exit. Secondly, we show that CDK1 phosphorylates CHMP7 upon M-entry at Ser3 and Ser441 and that this phosphorylation reduces CHMP7’s interaction with LEM2, limiting its assembly during M-phase. We show that spatiotemporal differences in the dephosphorylation of CHMP7 license its assembly at the NE during telophase, but restrict its assembly on the ER at this time. Without CDK1 phosphorylation, CHMP7 undergoes inappropriate assembly in the peripheral ER during M-exit, capturing LEM2 and downstream ESCRT-III components. Lastly, we establish that a microtubule network is dispensable for ESCRT-III assembly at the reforming nuclear envelope. These data identify a key cell-cycle control programme allowing ESCRT-III-dependent nuclear regeneration.
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spelling pubmed-83243002021-08-02 CDK1 controls CHMP7-dependent nuclear envelope reformation Gatta, Alberto T Olmos, Yolanda Stoten, Caroline L Chen, Qu Rosenthal, Peter B Carlton, Jeremy G eLife Cell Biology Through membrane sealing and disassembly of spindle microtubules, the Endosomal Sorting Complex Required for Transport-III (ESCRT-III) machinery has emerged as a key player in the regeneration of a sealed nuclear envelope (NE) during mitotic exit, and in the repair of this organelle during interphase rupture. ESCRT-III assembly at the NE occurs transiently during mitotic (M) exit and is initiated when CHMP7, an ER-localised ESCRT-II/ESCRT-III hybrid protein, interacts with the Inner Nuclear Membrane (INM) protein LEM2. Whilst classical nucleocytoplasmic transport mechanisms have been proposed to separate LEM2 and CHMP7 during interphase, it is unclear how CHMP7 assembly is suppressed in mitosis when NE and ER identities are mixed. Here, we use live cell imaging and protein biochemistry to examine the biology of these proteins during M-exit. Firstly, we show that CHMP7 plays an important role in the dissolution of LEM2 clusters that form at the NE during M-exit. Secondly, we show that CDK1 phosphorylates CHMP7 upon M-entry at Ser3 and Ser441 and that this phosphorylation reduces CHMP7’s interaction with LEM2, limiting its assembly during M-phase. We show that spatiotemporal differences in the dephosphorylation of CHMP7 license its assembly at the NE during telophase, but restrict its assembly on the ER at this time. Without CDK1 phosphorylation, CHMP7 undergoes inappropriate assembly in the peripheral ER during M-exit, capturing LEM2 and downstream ESCRT-III components. Lastly, we establish that a microtubule network is dispensable for ESCRT-III assembly at the reforming nuclear envelope. These data identify a key cell-cycle control programme allowing ESCRT-III-dependent nuclear regeneration. eLife Sciences Publications, Ltd 2021-07-21 /pmc/articles/PMC8324300/ /pubmed/34286694 http://dx.doi.org/10.7554/eLife.59999 Text en © 2021, Gatta et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Gatta, Alberto T
Olmos, Yolanda
Stoten, Caroline L
Chen, Qu
Rosenthal, Peter B
Carlton, Jeremy G
CDK1 controls CHMP7-dependent nuclear envelope reformation
title CDK1 controls CHMP7-dependent nuclear envelope reformation
title_full CDK1 controls CHMP7-dependent nuclear envelope reformation
title_fullStr CDK1 controls CHMP7-dependent nuclear envelope reformation
title_full_unstemmed CDK1 controls CHMP7-dependent nuclear envelope reformation
title_short CDK1 controls CHMP7-dependent nuclear envelope reformation
title_sort cdk1 controls chmp7-dependent nuclear envelope reformation
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8324300/
https://www.ncbi.nlm.nih.gov/pubmed/34286694
http://dx.doi.org/10.7554/eLife.59999
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