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Deceleration of the cell cycle underpins a switch from proliferative to terminal divisions in plant stomatal lineage

Differentiation of specialized cell types requires precise cell-cycle control. Plant stomata are generated through asymmetric divisions of a stem-cell-like precursor followed by a single symmetric division that creates paired guard cells surrounding a pore. The stomatal-lineage-specific transcriptio...

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Autores principales: Han, Soon-Ki, Herrmann, Arvid, Yang, Jiyuan, Iwasaki, Rie, Sakamoto, Tomoaki, Desvoyes, Bénédicte, Kimura, Seisuke, Gutierrez, Crisanto, Kim, Eun-Deok, Torii, Keiko U.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8926846/
https://www.ncbi.nlm.nih.gov/pubmed/35148836
http://dx.doi.org/10.1016/j.devcel.2022.01.014
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author Han, Soon-Ki
Herrmann, Arvid
Yang, Jiyuan
Iwasaki, Rie
Sakamoto, Tomoaki
Desvoyes, Bénédicte
Kimura, Seisuke
Gutierrez, Crisanto
Kim, Eun-Deok
Torii, Keiko U.
author_facet Han, Soon-Ki
Herrmann, Arvid
Yang, Jiyuan
Iwasaki, Rie
Sakamoto, Tomoaki
Desvoyes, Bénédicte
Kimura, Seisuke
Gutierrez, Crisanto
Kim, Eun-Deok
Torii, Keiko U.
author_sort Han, Soon-Ki
collection PubMed
description Differentiation of specialized cell types requires precise cell-cycle control. Plant stomata are generated through asymmetric divisions of a stem-cell-like precursor followed by a single symmetric division that creates paired guard cells surrounding a pore. The stomatal-lineage-specific transcription factor MUTE terminates the asymmetric divisions and commits to differentiation. However, the role of cell-cycle machineries in this transition remains unknown. We discover that the symmetric division is slower than the asymmetric division in Arabidopsis. We identify a plant-specific cyclin-dependent kinase inhibitor, SIAMESE-RELATED4 (SMR4), as a MUTE-induced molecular brake that decelerates the cell cycle. SMR4 physically and functionally associates with CYCD3;1 and extends the G1 phase of asymmetric divisions. By contrast, SMR4 fails to interact with CYCD5;1, a MUTE-induced G1 cyclin, and permits the symmetric division. Our work unravels a molecular framework of the proliferation-to-differentiation switch within the stomatal lineage and suggests that a timely proliferative cell cycle is critical for stomatal-lineage identity.
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spelling pubmed-89268462022-03-17 Deceleration of the cell cycle underpins a switch from proliferative to terminal divisions in plant stomatal lineage Han, Soon-Ki Herrmann, Arvid Yang, Jiyuan Iwasaki, Rie Sakamoto, Tomoaki Desvoyes, Bénédicte Kimura, Seisuke Gutierrez, Crisanto Kim, Eun-Deok Torii, Keiko U. Dev Cell Article Differentiation of specialized cell types requires precise cell-cycle control. Plant stomata are generated through asymmetric divisions of a stem-cell-like precursor followed by a single symmetric division that creates paired guard cells surrounding a pore. The stomatal-lineage-specific transcription factor MUTE terminates the asymmetric divisions and commits to differentiation. However, the role of cell-cycle machineries in this transition remains unknown. We discover that the symmetric division is slower than the asymmetric division in Arabidopsis. We identify a plant-specific cyclin-dependent kinase inhibitor, SIAMESE-RELATED4 (SMR4), as a MUTE-induced molecular brake that decelerates the cell cycle. SMR4 physically and functionally associates with CYCD3;1 and extends the G1 phase of asymmetric divisions. By contrast, SMR4 fails to interact with CYCD5;1, a MUTE-induced G1 cyclin, and permits the symmetric division. Our work unravels a molecular framework of the proliferation-to-differentiation switch within the stomatal lineage and suggests that a timely proliferative cell cycle is critical for stomatal-lineage identity. Cell Press 2022-03-14 /pmc/articles/PMC8926846/ /pubmed/35148836 http://dx.doi.org/10.1016/j.devcel.2022.01.014 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Han, Soon-Ki
Herrmann, Arvid
Yang, Jiyuan
Iwasaki, Rie
Sakamoto, Tomoaki
Desvoyes, Bénédicte
Kimura, Seisuke
Gutierrez, Crisanto
Kim, Eun-Deok
Torii, Keiko U.
Deceleration of the cell cycle underpins a switch from proliferative to terminal divisions in plant stomatal lineage
title Deceleration of the cell cycle underpins a switch from proliferative to terminal divisions in plant stomatal lineage
title_full Deceleration of the cell cycle underpins a switch from proliferative to terminal divisions in plant stomatal lineage
title_fullStr Deceleration of the cell cycle underpins a switch from proliferative to terminal divisions in plant stomatal lineage
title_full_unstemmed Deceleration of the cell cycle underpins a switch from proliferative to terminal divisions in plant stomatal lineage
title_short Deceleration of the cell cycle underpins a switch from proliferative to terminal divisions in plant stomatal lineage
title_sort deceleration of the cell cycle underpins a switch from proliferative to terminal divisions in plant stomatal lineage
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8926846/
https://www.ncbi.nlm.nih.gov/pubmed/35148836
http://dx.doi.org/10.1016/j.devcel.2022.01.014
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