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Arabidopsis thaliana SPF1 and SPF2 are nuclear-located ULP2-like SUMO proteases that act downstream of SIZ1 in plant development

Post-translational modifiers such as the small ubiquitin-like modifier (SUMO) peptide act as fast and reversible protein regulators. Functional characterization of the sumoylation machinery has determined the key regulatory role that SUMO plays in plant development. Unlike components of the SUMO con...

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Autores principales: Castro, Pedro Humberto, Santos, Miguel Ângelo, Freitas, Sara, Cana-Quijada, Pepe, Lourenço, Tiago, Rodrigues, Mafalda A A, Fonseca, Fátima, Ruiz-Albert, Javier, Azevedo, Jorge E, Tavares, Rui Manuel, Castillo, Araceli G, Bejarano, Eduardo R, Azevedo, Herlander
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6117582/
https://www.ncbi.nlm.nih.gov/pubmed/30053161
http://dx.doi.org/10.1093/jxb/ery265
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author Castro, Pedro Humberto
Santos, Miguel Ângelo
Freitas, Sara
Cana-Quijada, Pepe
Lourenço, Tiago
Rodrigues, Mafalda A A
Fonseca, Fátima
Ruiz-Albert, Javier
Azevedo, Jorge E
Tavares, Rui Manuel
Castillo, Araceli G
Bejarano, Eduardo R
Azevedo, Herlander
author_facet Castro, Pedro Humberto
Santos, Miguel Ângelo
Freitas, Sara
Cana-Quijada, Pepe
Lourenço, Tiago
Rodrigues, Mafalda A A
Fonseca, Fátima
Ruiz-Albert, Javier
Azevedo, Jorge E
Tavares, Rui Manuel
Castillo, Araceli G
Bejarano, Eduardo R
Azevedo, Herlander
author_sort Castro, Pedro Humberto
collection PubMed
description Post-translational modifiers such as the small ubiquitin-like modifier (SUMO) peptide act as fast and reversible protein regulators. Functional characterization of the sumoylation machinery has determined the key regulatory role that SUMO plays in plant development. Unlike components of the SUMO conjugation pathway, SUMO proteases (ULPs) are encoded by a relatively large gene family and are potential sources of specificity within the pathway. This study reports a thorough comparative genomics and phylogenetic characterization of plant ULPs, revealing the presence of one ULP1-like and three ULP2-like SUMO protease subgroups within plant genomes. As representatives of an under-studied subgroup, Arabidopsis SPF1 and SPF2 were subjected to functional characterization. Loss-of-function mutants implicated both proteins with vegetative growth, flowering time, and seed size and yield. Mutants constitutively accumulated SUMO conjugates, and yeast complementation assays associated these proteins with the function of ScUlp2 but not ScUlp1. Fluorescence imaging placed both proteins in the plant cell nucleoplasm. Transcriptomics analysis indicated strong regulatory involvement in secondary metabolism, cell wall remodelling, and nitrate assimilation. Furthermore, developmental defects of the spf1-1 spf2-2 (spf1/2) double-mutant opposed those of the major E3 ligase siz1 mutant and, most significantly, developmental and transcriptomic characterization of the siz1 spf1/2 triple-mutant placed SIZ1 as epistatic to SPF1 and SPF2.
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spelling pubmed-61175822018-09-05 Arabidopsis thaliana SPF1 and SPF2 are nuclear-located ULP2-like SUMO proteases that act downstream of SIZ1 in plant development Castro, Pedro Humberto Santos, Miguel Ângelo Freitas, Sara Cana-Quijada, Pepe Lourenço, Tiago Rodrigues, Mafalda A A Fonseca, Fátima Ruiz-Albert, Javier Azevedo, Jorge E Tavares, Rui Manuel Castillo, Araceli G Bejarano, Eduardo R Azevedo, Herlander J Exp Bot Research Papers Post-translational modifiers such as the small ubiquitin-like modifier (SUMO) peptide act as fast and reversible protein regulators. Functional characterization of the sumoylation machinery has determined the key regulatory role that SUMO plays in plant development. Unlike components of the SUMO conjugation pathway, SUMO proteases (ULPs) are encoded by a relatively large gene family and are potential sources of specificity within the pathway. This study reports a thorough comparative genomics and phylogenetic characterization of plant ULPs, revealing the presence of one ULP1-like and three ULP2-like SUMO protease subgroups within plant genomes. As representatives of an under-studied subgroup, Arabidopsis SPF1 and SPF2 were subjected to functional characterization. Loss-of-function mutants implicated both proteins with vegetative growth, flowering time, and seed size and yield. Mutants constitutively accumulated SUMO conjugates, and yeast complementation assays associated these proteins with the function of ScUlp2 but not ScUlp1. Fluorescence imaging placed both proteins in the plant cell nucleoplasm. Transcriptomics analysis indicated strong regulatory involvement in secondary metabolism, cell wall remodelling, and nitrate assimilation. Furthermore, developmental defects of the spf1-1 spf2-2 (spf1/2) double-mutant opposed those of the major E3 ligase siz1 mutant and, most significantly, developmental and transcriptomic characterization of the siz1 spf1/2 triple-mutant placed SIZ1 as epistatic to SPF1 and SPF2. Oxford University Press 2018-08-31 2018-07-25 /pmc/articles/PMC6117582/ /pubmed/30053161 http://dx.doi.org/10.1093/jxb/ery265 Text en © The Author(s) 2018. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Papers
Castro, Pedro Humberto
Santos, Miguel Ângelo
Freitas, Sara
Cana-Quijada, Pepe
Lourenço, Tiago
Rodrigues, Mafalda A A
Fonseca, Fátima
Ruiz-Albert, Javier
Azevedo, Jorge E
Tavares, Rui Manuel
Castillo, Araceli G
Bejarano, Eduardo R
Azevedo, Herlander
Arabidopsis thaliana SPF1 and SPF2 are nuclear-located ULP2-like SUMO proteases that act downstream of SIZ1 in plant development
title Arabidopsis thaliana SPF1 and SPF2 are nuclear-located ULP2-like SUMO proteases that act downstream of SIZ1 in plant development
title_full Arabidopsis thaliana SPF1 and SPF2 are nuclear-located ULP2-like SUMO proteases that act downstream of SIZ1 in plant development
title_fullStr Arabidopsis thaliana SPF1 and SPF2 are nuclear-located ULP2-like SUMO proteases that act downstream of SIZ1 in plant development
title_full_unstemmed Arabidopsis thaliana SPF1 and SPF2 are nuclear-located ULP2-like SUMO proteases that act downstream of SIZ1 in plant development
title_short Arabidopsis thaliana SPF1 and SPF2 are nuclear-located ULP2-like SUMO proteases that act downstream of SIZ1 in plant development
title_sort arabidopsis thaliana spf1 and spf2 are nuclear-located ulp2-like sumo proteases that act downstream of siz1 in plant development
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6117582/
https://www.ncbi.nlm.nih.gov/pubmed/30053161
http://dx.doi.org/10.1093/jxb/ery265
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