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Computational Approach for Structural Feature Determination of Grapevine NHX Antiporters

Plant NHX antiporters are responsible for monovalent cation/H(+) exchange across cellular membranes and play therefore a critical role for cellular pH regulation, Na(+) and K(+) homeostasis, and salt tolerance. Six members of grapevine NHX family (VvNHX1-6) have been structurally characterized. Phyl...

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Autores principales: Ayadi, Mariem, Ben Ayed, Rayda, Mzid, Rim, Aifa, Sami, Hanana, Mohsen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6343165/
https://www.ncbi.nlm.nih.gov/pubmed/30729118
http://dx.doi.org/10.1155/2019/1031839
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author Ayadi, Mariem
Ben Ayed, Rayda
Mzid, Rim
Aifa, Sami
Hanana, Mohsen
author_facet Ayadi, Mariem
Ben Ayed, Rayda
Mzid, Rim
Aifa, Sami
Hanana, Mohsen
author_sort Ayadi, Mariem
collection PubMed
description Plant NHX antiporters are responsible for monovalent cation/H(+) exchange across cellular membranes and play therefore a critical role for cellular pH regulation, Na(+) and K(+) homeostasis, and salt tolerance. Six members of grapevine NHX family (VvNHX1-6) have been structurally characterized. Phylogenetic analysis revealed their organization in two groups: VvNHX1-5 belonging to group I (vacuolar) and VvNHX6 belonging to group II (endosomal). Conserved domain analysis of these VvNHXs indicates the presence of different kinds of domains. Out of these, two domains function as monovalent cation-proton antiporters and one as the aspartate-alanine exchange; the remaining are not yet with defined function. Overall, VvNHXs proteins are typically made of 11-13 putative transmembrane regions at their N-terminus which contain the consensus amiloride-binding domain in the 3(rd) TM domain and a cation-binding site in between the 5(th) and 6(th) TM domain, followed by a hydrophilic C-terminus that is the target of several and diverse regulatory posttranslational modifications. Using a combination of primary structure analysis, secondary structure alignments, and the tertiary structural models, the VvNHXs revealed mainly 18 α helices although without β sheets. Homology modeling of the 3D structure showed that VvNHX antiporters are similar to the bacterial sodium proton antiporters MjNhaP1 (Methanocaldococcus jannaschii) and PaNhaP (Pyrococcus abyssi).
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spelling pubmed-63431652019-02-06 Computational Approach for Structural Feature Determination of Grapevine NHX Antiporters Ayadi, Mariem Ben Ayed, Rayda Mzid, Rim Aifa, Sami Hanana, Mohsen Biomed Res Int Research Article Plant NHX antiporters are responsible for monovalent cation/H(+) exchange across cellular membranes and play therefore a critical role for cellular pH regulation, Na(+) and K(+) homeostasis, and salt tolerance. Six members of grapevine NHX family (VvNHX1-6) have been structurally characterized. Phylogenetic analysis revealed their organization in two groups: VvNHX1-5 belonging to group I (vacuolar) and VvNHX6 belonging to group II (endosomal). Conserved domain analysis of these VvNHXs indicates the presence of different kinds of domains. Out of these, two domains function as monovalent cation-proton antiporters and one as the aspartate-alanine exchange; the remaining are not yet with defined function. Overall, VvNHXs proteins are typically made of 11-13 putative transmembrane regions at their N-terminus which contain the consensus amiloride-binding domain in the 3(rd) TM domain and a cation-binding site in between the 5(th) and 6(th) TM domain, followed by a hydrophilic C-terminus that is the target of several and diverse regulatory posttranslational modifications. Using a combination of primary structure analysis, secondary structure alignments, and the tertiary structural models, the VvNHXs revealed mainly 18 α helices although without β sheets. Homology modeling of the 3D structure showed that VvNHX antiporters are similar to the bacterial sodium proton antiporters MjNhaP1 (Methanocaldococcus jannaschii) and PaNhaP (Pyrococcus abyssi). Hindawi 2019-01-09 /pmc/articles/PMC6343165/ /pubmed/30729118 http://dx.doi.org/10.1155/2019/1031839 Text en Copyright © 2019 Mariem Ayadi et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ayadi, Mariem
Ben Ayed, Rayda
Mzid, Rim
Aifa, Sami
Hanana, Mohsen
Computational Approach for Structural Feature Determination of Grapevine NHX Antiporters
title Computational Approach for Structural Feature Determination of Grapevine NHX Antiporters
title_full Computational Approach for Structural Feature Determination of Grapevine NHX Antiporters
title_fullStr Computational Approach for Structural Feature Determination of Grapevine NHX Antiporters
title_full_unstemmed Computational Approach for Structural Feature Determination of Grapevine NHX Antiporters
title_short Computational Approach for Structural Feature Determination of Grapevine NHX Antiporters
title_sort computational approach for structural feature determination of grapevine nhx antiporters
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6343165/
https://www.ncbi.nlm.nih.gov/pubmed/30729118
http://dx.doi.org/10.1155/2019/1031839
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