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Consecutive action of two BAHD acyltransferases promotes tetracoumaroyl spermine accumulation in chicory

Fully substituted phenolamide accumulation in the pollen coat of Eudicotyledons is a conserved evolutionary chemical trait. Interestingly, spermidine derivatives are replaced by spermine derivatives as the main phenolamide accumulated in the Asteraceae family. Here, we show that the full substitutio...

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Autores principales: Bernard, Guillaume, Buges, Julie, Delporte, Marianne, Molinié, Roland, Besseau, Sébastien, Bouchereau, Alain, Watrin, Amandine, Fontaine, Jean-Xavier, Mathiron, David, Berardocco, Solenne, Bassard, Solène, Quéro, Anthony, Hilbert, Jean-Louis, Rambaud, Caroline, Gagneul, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9343010/
https://www.ncbi.nlm.nih.gov/pubmed/35604091
http://dx.doi.org/10.1093/plphys/kiac234
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author Bernard, Guillaume
Buges, Julie
Delporte, Marianne
Molinié, Roland
Besseau, Sébastien
Bouchereau, Alain
Watrin, Amandine
Fontaine, Jean-Xavier
Mathiron, David
Berardocco, Solenne
Bassard, Solène
Quéro, Anthony
Hilbert, Jean-Louis
Rambaud, Caroline
Gagneul, David
author_facet Bernard, Guillaume
Buges, Julie
Delporte, Marianne
Molinié, Roland
Besseau, Sébastien
Bouchereau, Alain
Watrin, Amandine
Fontaine, Jean-Xavier
Mathiron, David
Berardocco, Solenne
Bassard, Solène
Quéro, Anthony
Hilbert, Jean-Louis
Rambaud, Caroline
Gagneul, David
author_sort Bernard, Guillaume
collection PubMed
description Fully substituted phenolamide accumulation in the pollen coat of Eudicotyledons is a conserved evolutionary chemical trait. Interestingly, spermidine derivatives are replaced by spermine derivatives as the main phenolamide accumulated in the Asteraceae family. Here, we show that the full substitution of spermine in chicory (Cichorium intybus) requires the successive action of two enzymes, that is spermidine hydroxycinnamoyl transferase-like proteins 1 and 2 (CiSHT1 and CiSHT2), two members of the BAHD enzyme family. Deletion of these genes in chicory using CRISPR/Cas9 gene editing technology evidenced that CiSHT2 catalyzes the first N-acylation steps, whereas CiSHT1 fulfills the substitution to give rise to tetracoumaroyl spermine. Additional experiments using Nicotiana benthamiana confirmed these findings. Expression of CiSHT2 alone promoted partially substituted spermine accumulation, and coexpression of CiSHT2 and CiSHT1 promoted synthesis and accumulation of the fully substituted spermine. Structural characterization of the main product of CiSHT2 using nuclear magnetic resonance revealed that CiSHT2 preferentially catalyzed N-acylation of secondary amines to form N(5),N(10)-dicoumaroyl spermine, whereas CiSHT1 used this substrate to synthesize tetracoumaroyl spermine. We showed that spermine availability may be a key determinant toward preferential accumulation of spermine derivatives over spermidine derivatives in chicory. Our results reveal a subfunctionalization among the spermidine hydroxycinnamoyl transferase that was accompanied by a modification of free polyamine metabolism that has resulted in the accumulation of this new phenolamide in chicory and most probably in all Asteraceae. Finally, genetically engineered yeast (Saccharomyces cerevisiae) was shown to be a promising host platform to produce these compounds.
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spelling pubmed-93430102022-08-02 Consecutive action of two BAHD acyltransferases promotes tetracoumaroyl spermine accumulation in chicory Bernard, Guillaume Buges, Julie Delporte, Marianne Molinié, Roland Besseau, Sébastien Bouchereau, Alain Watrin, Amandine Fontaine, Jean-Xavier Mathiron, David Berardocco, Solenne Bassard, Solène Quéro, Anthony Hilbert, Jean-Louis Rambaud, Caroline Gagneul, David Plant Physiol Research Articles Fully substituted phenolamide accumulation in the pollen coat of Eudicotyledons is a conserved evolutionary chemical trait. Interestingly, spermidine derivatives are replaced by spermine derivatives as the main phenolamide accumulated in the Asteraceae family. Here, we show that the full substitution of spermine in chicory (Cichorium intybus) requires the successive action of two enzymes, that is spermidine hydroxycinnamoyl transferase-like proteins 1 and 2 (CiSHT1 and CiSHT2), two members of the BAHD enzyme family. Deletion of these genes in chicory using CRISPR/Cas9 gene editing technology evidenced that CiSHT2 catalyzes the first N-acylation steps, whereas CiSHT1 fulfills the substitution to give rise to tetracoumaroyl spermine. Additional experiments using Nicotiana benthamiana confirmed these findings. Expression of CiSHT2 alone promoted partially substituted spermine accumulation, and coexpression of CiSHT2 and CiSHT1 promoted synthesis and accumulation of the fully substituted spermine. Structural characterization of the main product of CiSHT2 using nuclear magnetic resonance revealed that CiSHT2 preferentially catalyzed N-acylation of secondary amines to form N(5),N(10)-dicoumaroyl spermine, whereas CiSHT1 used this substrate to synthesize tetracoumaroyl spermine. We showed that spermine availability may be a key determinant toward preferential accumulation of spermine derivatives over spermidine derivatives in chicory. Our results reveal a subfunctionalization among the spermidine hydroxycinnamoyl transferase that was accompanied by a modification of free polyamine metabolism that has resulted in the accumulation of this new phenolamide in chicory and most probably in all Asteraceae. Finally, genetically engineered yeast (Saccharomyces cerevisiae) was shown to be a promising host platform to produce these compounds. Oxford University Press 2022-05-23 /pmc/articles/PMC9343010/ /pubmed/35604091 http://dx.doi.org/10.1093/plphys/kiac234 Text en © The Author(s) 2022. Published by Oxford University Press on behalf of American Society of Plant Biologists. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs licence (https://creativecommons.org/licenses/by-nc-nd/4.0/), which permits non-commercial reproduction and distribution of the work, in any medium, provided the original work is not altered or transformed in any way, and that the work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Articles
Bernard, Guillaume
Buges, Julie
Delporte, Marianne
Molinié, Roland
Besseau, Sébastien
Bouchereau, Alain
Watrin, Amandine
Fontaine, Jean-Xavier
Mathiron, David
Berardocco, Solenne
Bassard, Solène
Quéro, Anthony
Hilbert, Jean-Louis
Rambaud, Caroline
Gagneul, David
Consecutive action of two BAHD acyltransferases promotes tetracoumaroyl spermine accumulation in chicory
title Consecutive action of two BAHD acyltransferases promotes tetracoumaroyl spermine accumulation in chicory
title_full Consecutive action of two BAHD acyltransferases promotes tetracoumaroyl spermine accumulation in chicory
title_fullStr Consecutive action of two BAHD acyltransferases promotes tetracoumaroyl spermine accumulation in chicory
title_full_unstemmed Consecutive action of two BAHD acyltransferases promotes tetracoumaroyl spermine accumulation in chicory
title_short Consecutive action of two BAHD acyltransferases promotes tetracoumaroyl spermine accumulation in chicory
title_sort consecutive action of two bahd acyltransferases promotes tetracoumaroyl spermine accumulation in chicory
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9343010/
https://www.ncbi.nlm.nih.gov/pubmed/35604091
http://dx.doi.org/10.1093/plphys/kiac234
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