Protein modification by SUMO modulates essential biological processes in eukaryotes. SUMOylation is facilitated by sequential action of the E1-activating, E2-conjugating, and E3-ligase enzymes. In plants, SUMO regulates plant development and stress responses, which are key determinants in agricultural productivity. To generate additional tools for advancing our knowledge about the SUMO biology, we have developed a strategy for inhibiting in vivo SUMO conjugation based on disruption of SUMO E1-E2 interactions through expression of E1 SAE2UFDCt domain. Targeted mutagenesis and phylogenetic analyses revealed that this inhibition involves a short motif in SAE2UFDCt highly divergent across kingdoms. Transgenic plants expressing the SAE2UFDCt domain displayed dose-dependent inhibition of SUMO conjugation, and have revealed the existence of a post-transcriptional mechanism that regulates SUMO E2 conjugating enzyme levels. Interestingly, these transgenic plants displayed increased susceptibility to necrotrophic fungal infections by Botrytis cinerea and Plectosphaerella cucumerina. Early after fungal inoculation, host SUMO conjugation was post-transcriptionally downregulated, suggesting that targeting SUMOylation machinery could constitute a novel mechanism for fungal pathogenicity. These findings support the role of SUMOylation as a mechanism involved in plant protection from environmental stresses. In addition, the strategy for inhibiting SUMO conjugation in vivo described in this study might be applicable in important crop plants and other non-plant organisms regardless of their genetic complexity.

SUMOylation Inhibition Mediated by Disruption of SUMO E1-E2 Interactions Confers Plant Susceptibility to Necrotrophic Fungal Pathogens / L. Castano-Miquel, A. Mas, I. Teixeira, J. Segui, A. Perearnau, B.N. Thampi, A.L. Schapire, N. Rodrigo, G. La Verde, S. Manrique, M. Coca, L.M. Lois. - In: MOLECULAR PLANT. - ISSN 1674-2052. - 10:5(2017), pp. 709-720. [10.1016/j.molp.2017.01.007]

SUMOylation Inhibition Mediated by Disruption of SUMO E1-E2 Interactions Confers Plant Susceptibility to Necrotrophic Fungal Pathogens

S. Manrique;
2017

Abstract

Protein modification by SUMO modulates essential biological processes in eukaryotes. SUMOylation is facilitated by sequential action of the E1-activating, E2-conjugating, and E3-ligase enzymes. In plants, SUMO regulates plant development and stress responses, which are key determinants in agricultural productivity. To generate additional tools for advancing our knowledge about the SUMO biology, we have developed a strategy for inhibiting in vivo SUMO conjugation based on disruption of SUMO E1-E2 interactions through expression of E1 SAE2UFDCt domain. Targeted mutagenesis and phylogenetic analyses revealed that this inhibition involves a short motif in SAE2UFDCt highly divergent across kingdoms. Transgenic plants expressing the SAE2UFDCt domain displayed dose-dependent inhibition of SUMO conjugation, and have revealed the existence of a post-transcriptional mechanism that regulates SUMO E2 conjugating enzyme levels. Interestingly, these transgenic plants displayed increased susceptibility to necrotrophic fungal infections by Botrytis cinerea and Plectosphaerella cucumerina. Early after fungal inoculation, host SUMO conjugation was post-transcriptionally downregulated, suggesting that targeting SUMOylation machinery could constitute a novel mechanism for fungal pathogenicity. These findings support the role of SUMOylation as a mechanism involved in plant protection from environmental stresses. In addition, the strategy for inhibiting SUMO conjugation in vivo described in this study might be applicable in important crop plants and other non-plant organisms regardless of their genetic complexity.
English
SUMO inhibition; development; flowering; necrotrophic fungi; E1-activating enzyme; E1-E2 interaction disruption
Settore BIO/01 - Botanica Generale
Articolo
Esperti anonimi
Ricerca di base
Pubblicazione scientifica
2017
Cell Press
10
5
709
720
12
Pubblicato
Periodico con rilevanza internazionale
scopus
pubmed
datacite
crossref
Aderisco
info:eu-repo/semantics/article
SUMOylation Inhibition Mediated by Disruption of SUMO E1-E2 Interactions Confers Plant Susceptibility to Necrotrophic Fungal Pathogens / L. Castano-Miquel, A. Mas, I. Teixeira, J. Segui, A. Perearnau, B.N. Thampi, A.L. Schapire, N. Rodrigo, G. La Verde, S. Manrique, M. Coca, L.M. Lois. - In: MOLECULAR PLANT. - ISSN 1674-2052. - 10:5(2017), pp. 709-720. [10.1016/j.molp.2017.01.007]
open
Prodotti della ricerca::01 - Articolo su periodico
12
262
Article (author)
no
L. Castano-Miquel, A. Mas, I. Teixeira, J. Segui, A. Perearnau, B.N. Thampi, A.L. Schapire, N. Rodrigo, G. La Verde, S. Manrique, M. Coca, L.M. Lois
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/734244
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