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Bioinformatic and Functional Analysis of a Key Determinant Underlying the Substrate Selectivity of the Al Transporter, Nrat1

Nrat1 is a member of the natural resistance-associated macrophage protein (Nramp) family of metal ion transporters in all organisms. Different from other Nramp members capable of transporting divalent metals, Nrat1 specifically transports trivalent aluminum (Al) ion. However, molecular mechanism und...

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Autores principales: Lu, Muxue, Yang, Guangzhe, Li, Peifang, Wang, Zhigang, Fu, Shan, Zhang, Xiang, Chen, Xi, Shi, Mingxing, Ming, Zhenhua, Xia, Jixing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5949535/
https://www.ncbi.nlm.nih.gov/pubmed/29868064
http://dx.doi.org/10.3389/fpls.2018.00606
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author Lu, Muxue
Yang, Guangzhe
Li, Peifang
Wang, Zhigang
Fu, Shan
Zhang, Xiang
Chen, Xi
Shi, Mingxing
Ming, Zhenhua
Xia, Jixing
author_facet Lu, Muxue
Yang, Guangzhe
Li, Peifang
Wang, Zhigang
Fu, Shan
Zhang, Xiang
Chen, Xi
Shi, Mingxing
Ming, Zhenhua
Xia, Jixing
author_sort Lu, Muxue
collection PubMed
description Nrat1 is a member of the natural resistance-associated macrophage protein (Nramp) family of metal ion transporters in all organisms. Different from other Nramp members capable of transporting divalent metals, Nrat1 specifically transports trivalent aluminum (Al) ion. However, molecular mechanism underlying the Al transport selectivity of Nrat1 remains unknown. Here, we performed structure-function analyses of Nrat1 and other Nramp members to gain insights into the determinants of ion selectivity. A phylogenetic analysis showed that plant Nramp transporters could be divided into five groups. OsNrat1 was found in one of the individual clades and clustered with SbNrat1 and ZmNrat1 on the evolutionary tree. Structural modeling revealed that Nrat1 transporters adopted a common LeuT fold shared by many Nramp-family transporters that likely employed an identical transport mechanism. Sequence alignment and evolutionary conservation analysis of amino acids identified a metal-permeation pathway of Nrat1 centered at the metal binding site. The metal binding site of Nrat1 was characterized by two conserved sequence motifs, i.e., the Asp-Pro-Ser-Asn motif (motif A) and the Ala-Ile-Ile-Thr motif (motif B). Replacement of the Ala-Met-Val-Met motif B of the OsNramp3 manganese (Mn) transporter to that of Nrat1 resulted in a partial gain of Al transport activity and a total loss of Mn in yeast. Conversely, substitution of the motif B of OsNrat1 with that of OsNramp3 altered the Al transport activity. These observations indicated the metal binding site, particularly the motif B, as a key determinant of Al selectivity of Nrat1.
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spelling pubmed-59495352018-06-04 Bioinformatic and Functional Analysis of a Key Determinant Underlying the Substrate Selectivity of the Al Transporter, Nrat1 Lu, Muxue Yang, Guangzhe Li, Peifang Wang, Zhigang Fu, Shan Zhang, Xiang Chen, Xi Shi, Mingxing Ming, Zhenhua Xia, Jixing Front Plant Sci Plant Science Nrat1 is a member of the natural resistance-associated macrophage protein (Nramp) family of metal ion transporters in all organisms. Different from other Nramp members capable of transporting divalent metals, Nrat1 specifically transports trivalent aluminum (Al) ion. However, molecular mechanism underlying the Al transport selectivity of Nrat1 remains unknown. Here, we performed structure-function analyses of Nrat1 and other Nramp members to gain insights into the determinants of ion selectivity. A phylogenetic analysis showed that plant Nramp transporters could be divided into five groups. OsNrat1 was found in one of the individual clades and clustered with SbNrat1 and ZmNrat1 on the evolutionary tree. Structural modeling revealed that Nrat1 transporters adopted a common LeuT fold shared by many Nramp-family transporters that likely employed an identical transport mechanism. Sequence alignment and evolutionary conservation analysis of amino acids identified a metal-permeation pathway of Nrat1 centered at the metal binding site. The metal binding site of Nrat1 was characterized by two conserved sequence motifs, i.e., the Asp-Pro-Ser-Asn motif (motif A) and the Ala-Ile-Ile-Thr motif (motif B). Replacement of the Ala-Met-Val-Met motif B of the OsNramp3 manganese (Mn) transporter to that of Nrat1 resulted in a partial gain of Al transport activity and a total loss of Mn in yeast. Conversely, substitution of the motif B of OsNrat1 with that of OsNramp3 altered the Al transport activity. These observations indicated the metal binding site, particularly the motif B, as a key determinant of Al selectivity of Nrat1. Frontiers Media S.A. 2018-05-07 /pmc/articles/PMC5949535/ /pubmed/29868064 http://dx.doi.org/10.3389/fpls.2018.00606 Text en Copyright © 2018 Lu, Yang, Li, Wang, Fu, Zhang, Chen, Shi, Ming and Xia. 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 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
Lu, Muxue
Yang, Guangzhe
Li, Peifang
Wang, Zhigang
Fu, Shan
Zhang, Xiang
Chen, Xi
Shi, Mingxing
Ming, Zhenhua
Xia, Jixing
Bioinformatic and Functional Analysis of a Key Determinant Underlying the Substrate Selectivity of the Al Transporter, Nrat1
title Bioinformatic and Functional Analysis of a Key Determinant Underlying the Substrate Selectivity of the Al Transporter, Nrat1
title_full Bioinformatic and Functional Analysis of a Key Determinant Underlying the Substrate Selectivity of the Al Transporter, Nrat1
title_fullStr Bioinformatic and Functional Analysis of a Key Determinant Underlying the Substrate Selectivity of the Al Transporter, Nrat1
title_full_unstemmed Bioinformatic and Functional Analysis of a Key Determinant Underlying the Substrate Selectivity of the Al Transporter, Nrat1
title_short Bioinformatic and Functional Analysis of a Key Determinant Underlying the Substrate Selectivity of the Al Transporter, Nrat1
title_sort bioinformatic and functional analysis of a key determinant underlying the substrate selectivity of the al transporter, nrat1
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5949535/
https://www.ncbi.nlm.nih.gov/pubmed/29868064
http://dx.doi.org/10.3389/fpls.2018.00606
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