The plant IRT1 iron transporter is a plasma membrane protein that takes up iron in root upon iron-limited conditions. Besides its primary metal substrate iron, IRT1 transports other divalent metals that overaccumulate in plants when soil iron is low and IRT1 is highly expressed. We previously reported that the intracellular regulatory loop between transmembrane helices TM4 and TM5 is involved in the post-translational regulation of IRT1 by its non-iron metal substrates. Upon excess of zinc, IRT1 undergoes phosphorylation by CIPK23 followed by its ubiquitination by IDF1 to target IRT1 for vacuolar degradation. This zinc-dependent downregulation of IRT1 requires the presence of four histidine ( residues in the IRT1 loop, that directly bind zinc. However, how selective metal binding is achieved and how this allows downstream regulation to take place is largely unknown. Here, we characterized the metal binding properties and structure of the IRT1 loop to better understand the molecular basis of non-iron metal sensing and signaling. Using a combination of circular dichroism and NMR, we reveal that zinc and manganese bind to the IRT1 loop with nanomolar range affinity, and that metal binding does not trigger structuration of the loop. We validate that zinc and manganese binding is mediated by four residues and identify aspartic acid (D) residue D173 as helping in metal coordination and participating to metal sensing and metal-dependent degradation of IRT1 in plants. Altogether, our data provide further understanding about how IRT1 regulatory loop senses high cytosolic divalent metalconcentrations to regulate metal uptake in plants.
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Research Article|
April 17 2025
Metal sensing properties of the disordered loop from the Arabidopsis metal transceptor IRT1 Open Access
Virginia Cointry;
Virginia Cointry
Plant Science Research Laboratory (LRSV), UMR5546 CNRS/Université Toulouse 3, 24 chemin de Borde Rouge, Auzeville Tolosane31320France
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Reyes Ródenas;
Reyes Ródenas
Plant Science Research Laboratory (LRSV), UMR5546 CNRS/Université Toulouse 3, 24 chemin de Borde Rouge, Auzeville Tolosane31320France
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Nelly Morellet;
Nelly Morellet
Structural Chemistry and Biology Team, Institut de Chimie des Substances Naturelles, CNRS UPR 2301, Université Paris-Sud, Université Paris-Saclay, Gif-sur-Yvette, France
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Steven Fanara;
Steven Fanara
Plant Science Research Laboratory (LRSV), UMR5546 CNRS/Université Toulouse 3, 24 chemin de Borde Rouge, Auzeville Tolosane31320France
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Valérie Cotelle;
Valérie Cotelle
Plant Science Research Laboratory (LRSV), UMR5546 CNRS/Université Toulouse 3, 24 chemin de Borde Rouge, Auzeville Tolosane31320France
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Julie Neveu;
Julie Neveu
Plant Science Research Laboratory (LRSV), UMR5546 CNRS/Université Toulouse 3, 24 chemin de Borde Rouge, Auzeville Tolosane31320France
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Grégory Vert
Grégory Vert
*
Plant Science Research Laboratory (LRSV), UMR5546 CNRS/Université Toulouse 3, 24 chemin de Borde Rouge, Auzeville Tolosane31320France
*Corresponding author: Grégory Vert ([email protected])
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Publisher: Portland Press Ltd
Received:
October 30 2024
Accepted:
April 17 2025
Online ISSN: 1470-8728
Print ISSN: 0264-6021
Funding
Funding Group:
- Award Group:
- Funder(s): Agence Nationale de la Recherche (ANR)
- Award Id(s): ANR-21-CE20-0046
- Funder(s):
- Award Group:
- Funder(s): Agence Nationale de la Recherche
- Award Id(s): ANR-10-LABX-41
- Funder(s):
© 2025 The Author(s).
2025
This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0
Biochem J (2025) BCJ20240685.
Article history
Received:
October 30 2024
Accepted:
April 17 2025
Citation
Virginia Cointry, Reyes Ródenas, Nelly Morellet, Steven Fanara, Valérie Cotelle, Julie Neveu, Grégory Vert; Metal sensing properties of the disordered loop from the Arabidopsis metal transceptor IRT1. Biochem J 2025; BCJ20240685. doi: https://doi.org/10.1042/BCJ-2024-0685
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