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An Optimized Screen Reduces the Number of GA Transporters and Provides Insights Into Nitrate Transporter 1/Peptide Transporter Family Substrate Determinants

Based on recent in vitro data, a relatively large number of the plant nitrate transporter 1/peptide transporter family (NPF) proteins have been suggested to function as gibberellic acid (GA) transporters. Most GA transporting NPF proteins also appear to transport other structurally unrelated phytoho...

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Autores principales: Wulff, Nikolai, Ernst, Heidi Asschenfeldt, Jørgensen, Morten Egevang, Lambertz, Sophie, Maierhofer, Tobias, Belew, Zeinu Mussa, Crocoll, Christoph, Motawia, Mohammed Saddik, Geiger, Dietmar, Jørgensen, Flemming Steen, Mirza, Osman, Nour-Eldin, Hussam Hassan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6785635/
https://www.ncbi.nlm.nih.gov/pubmed/31632416
http://dx.doi.org/10.3389/fpls.2019.01106
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author Wulff, Nikolai
Ernst, Heidi Asschenfeldt
Jørgensen, Morten Egevang
Lambertz, Sophie
Maierhofer, Tobias
Belew, Zeinu Mussa
Crocoll, Christoph
Motawia, Mohammed Saddik
Geiger, Dietmar
Jørgensen, Flemming Steen
Mirza, Osman
Nour-Eldin, Hussam Hassan
author_facet Wulff, Nikolai
Ernst, Heidi Asschenfeldt
Jørgensen, Morten Egevang
Lambertz, Sophie
Maierhofer, Tobias
Belew, Zeinu Mussa
Crocoll, Christoph
Motawia, Mohammed Saddik
Geiger, Dietmar
Jørgensen, Flemming Steen
Mirza, Osman
Nour-Eldin, Hussam Hassan
author_sort Wulff, Nikolai
collection PubMed
description Based on recent in vitro data, a relatively large number of the plant nitrate transporter 1/peptide transporter family (NPF) proteins have been suggested to function as gibberellic acid (GA) transporters. Most GA transporting NPF proteins also appear to transport other structurally unrelated phytohormones or metabolites. Several of the GAs used in previous in vitro assays are membrane permeable weak organic acids whose movement across membranes are influenced by the pH-sensitive ion-trap mechanism. Moreover, a large proportion of in vitro GA transport activities have been demonstrated indirectly via long-term yeast-based GA-dependent growth assays that are limited to detecting transport of bioactive GAs. Thus, there is a need for an optimized transport assay for identifying and characterizing GA transport. Here, we develop an improved transport assay in Xenopus laevis oocytes, wherein we directly measure movement of six different GAs across oocyte membranes over short time. We show that membrane permeability of GAs in oocytes can be predicted based on number of oxygen atoms and that several GAs do not diffuse over membranes regardless of changes in pH values. In addition, we show that small changes in internal cellular pH can result in strongly altered distribution of membrane permeable phytohormones. This prompts caution when interpreting heterologous transport activities. We use our transport assay to screen all Arabidopsis thaliana NPF proteins for transport activity towards six GAs (two membrane permeable and four non-permeable). The results presented here, significantly reduce the number of bona fide NPF GA transporters in Arabidopsis and narrow the activity to fewer subclades within the family. Furthermore, to gain first insight into the molecular determinants of substrate specificities toward organic molecules transported in the NPF, we charted all surface exposed amino acid residues in the substrate-binding cavity and correlated them to GA transport. This analysis suggests distinct residues within the substrate-binding cavity that are shared between GA transporting NPF proteins; the potential roles of these residues in determining substrate specificity are discussed.
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spelling pubmed-67856352019-10-18 An Optimized Screen Reduces the Number of GA Transporters and Provides Insights Into Nitrate Transporter 1/Peptide Transporter Family Substrate Determinants Wulff, Nikolai Ernst, Heidi Asschenfeldt Jørgensen, Morten Egevang Lambertz, Sophie Maierhofer, Tobias Belew, Zeinu Mussa Crocoll, Christoph Motawia, Mohammed Saddik Geiger, Dietmar Jørgensen, Flemming Steen Mirza, Osman Nour-Eldin, Hussam Hassan Front Plant Sci Plant Science Based on recent in vitro data, a relatively large number of the plant nitrate transporter 1/peptide transporter family (NPF) proteins have been suggested to function as gibberellic acid (GA) transporters. Most GA transporting NPF proteins also appear to transport other structurally unrelated phytohormones or metabolites. Several of the GAs used in previous in vitro assays are membrane permeable weak organic acids whose movement across membranes are influenced by the pH-sensitive ion-trap mechanism. Moreover, a large proportion of in vitro GA transport activities have been demonstrated indirectly via long-term yeast-based GA-dependent growth assays that are limited to detecting transport of bioactive GAs. Thus, there is a need for an optimized transport assay for identifying and characterizing GA transport. Here, we develop an improved transport assay in Xenopus laevis oocytes, wherein we directly measure movement of six different GAs across oocyte membranes over short time. We show that membrane permeability of GAs in oocytes can be predicted based on number of oxygen atoms and that several GAs do not diffuse over membranes regardless of changes in pH values. In addition, we show that small changes in internal cellular pH can result in strongly altered distribution of membrane permeable phytohormones. This prompts caution when interpreting heterologous transport activities. We use our transport assay to screen all Arabidopsis thaliana NPF proteins for transport activity towards six GAs (two membrane permeable and four non-permeable). The results presented here, significantly reduce the number of bona fide NPF GA transporters in Arabidopsis and narrow the activity to fewer subclades within the family. Furthermore, to gain first insight into the molecular determinants of substrate specificities toward organic molecules transported in the NPF, we charted all surface exposed amino acid residues in the substrate-binding cavity and correlated them to GA transport. This analysis suggests distinct residues within the substrate-binding cavity that are shared between GA transporting NPF proteins; the potential roles of these residues in determining substrate specificity are discussed. Frontiers Media S.A. 2019-10-03 /pmc/articles/PMC6785635/ /pubmed/31632416 http://dx.doi.org/10.3389/fpls.2019.01106 Text en Copyright © 2019 Wulff, Ernst, Jørgensen, Lambertz, Maierhofer, Belew, Crocoll, Motawia, Geiger, Jørgensen, Mirza and Nour-Eldin http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Wulff, Nikolai
Ernst, Heidi Asschenfeldt
Jørgensen, Morten Egevang
Lambertz, Sophie
Maierhofer, Tobias
Belew, Zeinu Mussa
Crocoll, Christoph
Motawia, Mohammed Saddik
Geiger, Dietmar
Jørgensen, Flemming Steen
Mirza, Osman
Nour-Eldin, Hussam Hassan
An Optimized Screen Reduces the Number of GA Transporters and Provides Insights Into Nitrate Transporter 1/Peptide Transporter Family Substrate Determinants
title An Optimized Screen Reduces the Number of GA Transporters and Provides Insights Into Nitrate Transporter 1/Peptide Transporter Family Substrate Determinants
title_full An Optimized Screen Reduces the Number of GA Transporters and Provides Insights Into Nitrate Transporter 1/Peptide Transporter Family Substrate Determinants
title_fullStr An Optimized Screen Reduces the Number of GA Transporters and Provides Insights Into Nitrate Transporter 1/Peptide Transporter Family Substrate Determinants
title_full_unstemmed An Optimized Screen Reduces the Number of GA Transporters and Provides Insights Into Nitrate Transporter 1/Peptide Transporter Family Substrate Determinants
title_short An Optimized Screen Reduces the Number of GA Transporters and Provides Insights Into Nitrate Transporter 1/Peptide Transporter Family Substrate Determinants
title_sort optimized screen reduces the number of ga transporters and provides insights into nitrate transporter 1/peptide transporter family substrate determinants
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6785635/
https://www.ncbi.nlm.nih.gov/pubmed/31632416
http://dx.doi.org/10.3389/fpls.2019.01106
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