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An NPF Transporter Exports a Central Monoterpene Indole Alkaloid Intermediate from the Vacuole

Plants sequester intermediates of metabolic pathways into different cellular compartments, but the mechanisms by which these molecules are transported remain poorly understood. Monoterpene indole alkaloids, a class of specialized metabolites that include the anti-cancer agent vincristine, anti-malar...

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Autores principales: Payne, Richard M. E., Xu, Deyang, Foureau, Emilien, Teto Carqueijeiro, Marta Ines Soares, Oudin, Audrey, de Bernonville, Thomas Dugé, Novak, Vlastimil, Burow, Meike, Olsen, Carl-Erik, Jones, D. Marc, Tatsis, Evangelos C., Pendle, Ali, Halkier, Barbara Ann, Geu-Flores, Fernando, Courdavault, Vincent, Nour-Eldin, Hussam Hassan, O’Connor, Sarah E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5238941/
https://www.ncbi.nlm.nih.gov/pubmed/28085153
http://dx.doi.org/10.1038/nplants.2016.208
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author Payne, Richard M. E.
Xu, Deyang
Foureau, Emilien
Teto Carqueijeiro, Marta Ines Soares
Oudin, Audrey
de Bernonville, Thomas Dugé
Novak, Vlastimil
Burow, Meike
Olsen, Carl-Erik
Jones, D. Marc
Tatsis, Evangelos C.
Pendle, Ali
Halkier, Barbara Ann
Geu-Flores, Fernando
Courdavault, Vincent
Nour-Eldin, Hussam Hassan
O’Connor, Sarah E.
author_facet Payne, Richard M. E.
Xu, Deyang
Foureau, Emilien
Teto Carqueijeiro, Marta Ines Soares
Oudin, Audrey
de Bernonville, Thomas Dugé
Novak, Vlastimil
Burow, Meike
Olsen, Carl-Erik
Jones, D. Marc
Tatsis, Evangelos C.
Pendle, Ali
Halkier, Barbara Ann
Geu-Flores, Fernando
Courdavault, Vincent
Nour-Eldin, Hussam Hassan
O’Connor, Sarah E.
author_sort Payne, Richard M. E.
collection PubMed
description Plants sequester intermediates of metabolic pathways into different cellular compartments, but the mechanisms by which these molecules are transported remain poorly understood. Monoterpene indole alkaloids, a class of specialized metabolites that include the anti-cancer agent vincristine, anti-malarial quinine and neurotoxin strychnine, are synthesized in several different cellular locations. However, the transporters that control the movement of these biosynthetic intermediates within cellular compartments have not been discovered. Here we present the discovery of a tonoplast localized Nitrate/Peptide Family (NPF) transporter from Catharanthus roseus, CrNPF2.9, that exports strictosidine, the central intermediate of this pathway, into the cytosol from the vacuole. This discovery highlights the role that intracellular localization plays in specialized metabolism, and sets the stage for understanding and controlling the central branch point of this pharmacologically important group of compounds.
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spelling pubmed-52389412017-07-13 An NPF Transporter Exports a Central Monoterpene Indole Alkaloid Intermediate from the Vacuole Payne, Richard M. E. Xu, Deyang Foureau, Emilien Teto Carqueijeiro, Marta Ines Soares Oudin, Audrey de Bernonville, Thomas Dugé Novak, Vlastimil Burow, Meike Olsen, Carl-Erik Jones, D. Marc Tatsis, Evangelos C. Pendle, Ali Halkier, Barbara Ann Geu-Flores, Fernando Courdavault, Vincent Nour-Eldin, Hussam Hassan O’Connor, Sarah E. Nat Plants Article Plants sequester intermediates of metabolic pathways into different cellular compartments, but the mechanisms by which these molecules are transported remain poorly understood. Monoterpene indole alkaloids, a class of specialized metabolites that include the anti-cancer agent vincristine, anti-malarial quinine and neurotoxin strychnine, are synthesized in several different cellular locations. However, the transporters that control the movement of these biosynthetic intermediates within cellular compartments have not been discovered. Here we present the discovery of a tonoplast localized Nitrate/Peptide Family (NPF) transporter from Catharanthus roseus, CrNPF2.9, that exports strictosidine, the central intermediate of this pathway, into the cytosol from the vacuole. This discovery highlights the role that intracellular localization plays in specialized metabolism, and sets the stage for understanding and controlling the central branch point of this pharmacologically important group of compounds. 2017-01-13 /pmc/articles/PMC5238941/ /pubmed/28085153 http://dx.doi.org/10.1038/nplants.2016.208 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Payne, Richard M. E.
Xu, Deyang
Foureau, Emilien
Teto Carqueijeiro, Marta Ines Soares
Oudin, Audrey
de Bernonville, Thomas Dugé
Novak, Vlastimil
Burow, Meike
Olsen, Carl-Erik
Jones, D. Marc
Tatsis, Evangelos C.
Pendle, Ali
Halkier, Barbara Ann
Geu-Flores, Fernando
Courdavault, Vincent
Nour-Eldin, Hussam Hassan
O’Connor, Sarah E.
An NPF Transporter Exports a Central Monoterpene Indole Alkaloid Intermediate from the Vacuole
title An NPF Transporter Exports a Central Monoterpene Indole Alkaloid Intermediate from the Vacuole
title_full An NPF Transporter Exports a Central Monoterpene Indole Alkaloid Intermediate from the Vacuole
title_fullStr An NPF Transporter Exports a Central Monoterpene Indole Alkaloid Intermediate from the Vacuole
title_full_unstemmed An NPF Transporter Exports a Central Monoterpene Indole Alkaloid Intermediate from the Vacuole
title_short An NPF Transporter Exports a Central Monoterpene Indole Alkaloid Intermediate from the Vacuole
title_sort npf transporter exports a central monoterpene indole alkaloid intermediate from the vacuole
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5238941/
https://www.ncbi.nlm.nih.gov/pubmed/28085153
http://dx.doi.org/10.1038/nplants.2016.208
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