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Moniliophthora perniciosa Necrosis- and Ethylene-Inducing Protein 2 (MpNep2) as a Metastable Dimer in Solution: Structural and Functional Implications

Understanding how Nep-like proteins (NLPs) behave during the cell cycle and disease progression of plant pathogenic oomycetes, fungi and bacteria is crucial in light of compelling evidence that these proteins play a role in Witches` Broom Disease (WBD) of Theobroma cacao, one of the most important p...

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Autores principales: de Oliveira, Guilherme A. P., Pereira, Elen G., Dias, Cristiano V., Souza, Theo L. F., Ferretti, Giulia D. S., Cordeiro, Yraima, Camillo, Luciana R., Cascardo, Júlio, Almeida, Fabio C., Valente, Ana Paula, Silva, Jerson L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3454426/
https://www.ncbi.nlm.nih.gov/pubmed/23029140
http://dx.doi.org/10.1371/journal.pone.0045620
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author de Oliveira, Guilherme A. P.
Pereira, Elen G.
Dias, Cristiano V.
Souza, Theo L. F.
Ferretti, Giulia D. S.
Cordeiro, Yraima
Camillo, Luciana R.
Cascardo, Júlio
Almeida, Fabio C.
Valente, Ana Paula
Silva, Jerson L.
author_facet de Oliveira, Guilherme A. P.
Pereira, Elen G.
Dias, Cristiano V.
Souza, Theo L. F.
Ferretti, Giulia D. S.
Cordeiro, Yraima
Camillo, Luciana R.
Cascardo, Júlio
Almeida, Fabio C.
Valente, Ana Paula
Silva, Jerson L.
author_sort de Oliveira, Guilherme A. P.
collection PubMed
description Understanding how Nep-like proteins (NLPs) behave during the cell cycle and disease progression of plant pathogenic oomycetes, fungi and bacteria is crucial in light of compelling evidence that these proteins play a role in Witches` Broom Disease (WBD) of Theobroma cacao, one of the most important phytopathological problems to afflict the Southern Hemisphere. The crystal structure of MpNep2, a member of the NLP family and the causal agent of WBD, revealed the key elements for its activity. This protein has the ability to refold after heating and was believed to act as a monomer in solution, in contrast to the related homologs MpNep1 and NPP from the oomyceteous fungus Phytophthora parasitica. Here, we identify and characterize a metastable MpNep2 dimer upon over-expression in Escherichia coli using different biochemical and structural approaches. We found using ultra-fast liquid chromatography that the MpNep2 dimer can be dissociated by heating but not by dilution, oxidation or high ionic strength. Small-angle X-ray scattering revealed a possible tail-to-tail interaction between monomers, and nuclear magnetic resonance measurements identified perturbed residues involved in the putative interface of interaction. We also explored the ability of the MpNep2 monomer to refold after heating or chemical denaturation. We observed that MpNep2 has a low stability and cooperative fold that could be an explanation for its structure and activity recovery after stress. These results can provide new insights into the mechanism for MpNep2′s action in dicot plants during the progression of WBD and may open new avenues for the involvement of NLP- oligomeric species in phytopathological disorders.
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spelling pubmed-34544262012-10-01 Moniliophthora perniciosa Necrosis- and Ethylene-Inducing Protein 2 (MpNep2) as a Metastable Dimer in Solution: Structural and Functional Implications de Oliveira, Guilherme A. P. Pereira, Elen G. Dias, Cristiano V. Souza, Theo L. F. Ferretti, Giulia D. S. Cordeiro, Yraima Camillo, Luciana R. Cascardo, Júlio Almeida, Fabio C. Valente, Ana Paula Silva, Jerson L. PLoS One Research Article Understanding how Nep-like proteins (NLPs) behave during the cell cycle and disease progression of plant pathogenic oomycetes, fungi and bacteria is crucial in light of compelling evidence that these proteins play a role in Witches` Broom Disease (WBD) of Theobroma cacao, one of the most important phytopathological problems to afflict the Southern Hemisphere. The crystal structure of MpNep2, a member of the NLP family and the causal agent of WBD, revealed the key elements for its activity. This protein has the ability to refold after heating and was believed to act as a monomer in solution, in contrast to the related homologs MpNep1 and NPP from the oomyceteous fungus Phytophthora parasitica. Here, we identify and characterize a metastable MpNep2 dimer upon over-expression in Escherichia coli using different biochemical and structural approaches. We found using ultra-fast liquid chromatography that the MpNep2 dimer can be dissociated by heating but not by dilution, oxidation or high ionic strength. Small-angle X-ray scattering revealed a possible tail-to-tail interaction between monomers, and nuclear magnetic resonance measurements identified perturbed residues involved in the putative interface of interaction. We also explored the ability of the MpNep2 monomer to refold after heating or chemical denaturation. We observed that MpNep2 has a low stability and cooperative fold that could be an explanation for its structure and activity recovery after stress. These results can provide new insights into the mechanism for MpNep2′s action in dicot plants during the progression of WBD and may open new avenues for the involvement of NLP- oligomeric species in phytopathological disorders. Public Library of Science 2012-09-24 /pmc/articles/PMC3454426/ /pubmed/23029140 http://dx.doi.org/10.1371/journal.pone.0045620 Text en © 2012 de Oliveira et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
de Oliveira, Guilherme A. P.
Pereira, Elen G.
Dias, Cristiano V.
Souza, Theo L. F.
Ferretti, Giulia D. S.
Cordeiro, Yraima
Camillo, Luciana R.
Cascardo, Júlio
Almeida, Fabio C.
Valente, Ana Paula
Silva, Jerson L.
Moniliophthora perniciosa Necrosis- and Ethylene-Inducing Protein 2 (MpNep2) as a Metastable Dimer in Solution: Structural and Functional Implications
title Moniliophthora perniciosa Necrosis- and Ethylene-Inducing Protein 2 (MpNep2) as a Metastable Dimer in Solution: Structural and Functional Implications
title_full Moniliophthora perniciosa Necrosis- and Ethylene-Inducing Protein 2 (MpNep2) as a Metastable Dimer in Solution: Structural and Functional Implications
title_fullStr Moniliophthora perniciosa Necrosis- and Ethylene-Inducing Protein 2 (MpNep2) as a Metastable Dimer in Solution: Structural and Functional Implications
title_full_unstemmed Moniliophthora perniciosa Necrosis- and Ethylene-Inducing Protein 2 (MpNep2) as a Metastable Dimer in Solution: Structural and Functional Implications
title_short Moniliophthora perniciosa Necrosis- and Ethylene-Inducing Protein 2 (MpNep2) as a Metastable Dimer in Solution: Structural and Functional Implications
title_sort moniliophthora perniciosa necrosis- and ethylene-inducing protein 2 (mpnep2) as a metastable dimer in solution: structural and functional implications
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3454426/
https://www.ncbi.nlm.nih.gov/pubmed/23029140
http://dx.doi.org/10.1371/journal.pone.0045620
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