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Evolution, Three-Dimensional Model and Localization of Truncated Hemoglobin PttTrHb of Hybrid Aspen

Thus far, research on plant hemoglobins (Hbs) has mainly concentrated on symbiotic and non-symbiotic Hbs, and information on truncated Hbs (TrHbs) is scarce. The aim of this study was to examine the origin, structure and localization of the truncated Hb (PttTrHb) of hybrid aspen (Populus tremula L....

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Autores principales: Dumont, Estelle, Jokipii-Lukkari, Soile, Parkash, Vimal, Vuosku, Jaana, Sundström, Robin, Nymalm, Yvonne, Sutela, Suvi, Taskinen, Katariina, Kallio, Pauli T., Salminen, Tiina A., Häggman, Hely
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3919811/
https://www.ncbi.nlm.nih.gov/pubmed/24520401
http://dx.doi.org/10.1371/journal.pone.0088573
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author Dumont, Estelle
Jokipii-Lukkari, Soile
Parkash, Vimal
Vuosku, Jaana
Sundström, Robin
Nymalm, Yvonne
Sutela, Suvi
Taskinen, Katariina
Kallio, Pauli T.
Salminen, Tiina A.
Häggman, Hely
author_facet Dumont, Estelle
Jokipii-Lukkari, Soile
Parkash, Vimal
Vuosku, Jaana
Sundström, Robin
Nymalm, Yvonne
Sutela, Suvi
Taskinen, Katariina
Kallio, Pauli T.
Salminen, Tiina A.
Häggman, Hely
author_sort Dumont, Estelle
collection PubMed
description Thus far, research on plant hemoglobins (Hbs) has mainly concentrated on symbiotic and non-symbiotic Hbs, and information on truncated Hbs (TrHbs) is scarce. The aim of this study was to examine the origin, structure and localization of the truncated Hb (PttTrHb) of hybrid aspen (Populus tremula L. × tremuloides Michx.), the model system of tree biology. Additionally, we studied the PttTrHb expression in relation to non-symbiotic class1 Hb gene (PttHb1) using RNAi-silenced hybrid aspen lines. Both the phylogenetic analysis and the three-dimensional (3D) model of PttTrHb supported the view that plant TrHbs evolved vertically from a bacterial TrHb. The 3D model suggested that PttTrHb adopts a 2-on-2 sandwich of α-helices and has a Bacillus subtilis -like ligand-binding pocket in which E11Gln and B10Tyr form hydrogen bonds to a ligand. However, due to differences in tunnel cavity and gate residue (E7Ala), it might not show similar ligand-binding kinetics as in Bs-HbO (E7Thr). The immunolocalization showed that PttTrHb protein was present in roots, stems as well as leaves of in vitro -grown hybrid aspens. In mature organs, PttTrHb was predominantly found in the vascular bundles and specifically at the site of lateral root formation, overlapping consistently with areas of nitric oxide (NO) production in plants. Furthermore, the NO donor sodium nitroprusside treatment increased the amount of PttTrHb in stems. The observed PttTrHb localization suggests that PttTrHb plays a role in the NO metabolism.
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spelling pubmed-39198112014-02-11 Evolution, Three-Dimensional Model and Localization of Truncated Hemoglobin PttTrHb of Hybrid Aspen Dumont, Estelle Jokipii-Lukkari, Soile Parkash, Vimal Vuosku, Jaana Sundström, Robin Nymalm, Yvonne Sutela, Suvi Taskinen, Katariina Kallio, Pauli T. Salminen, Tiina A. Häggman, Hely PLoS One Research Article Thus far, research on plant hemoglobins (Hbs) has mainly concentrated on symbiotic and non-symbiotic Hbs, and information on truncated Hbs (TrHbs) is scarce. The aim of this study was to examine the origin, structure and localization of the truncated Hb (PttTrHb) of hybrid aspen (Populus tremula L. × tremuloides Michx.), the model system of tree biology. Additionally, we studied the PttTrHb expression in relation to non-symbiotic class1 Hb gene (PttHb1) using RNAi-silenced hybrid aspen lines. Both the phylogenetic analysis and the three-dimensional (3D) model of PttTrHb supported the view that plant TrHbs evolved vertically from a bacterial TrHb. The 3D model suggested that PttTrHb adopts a 2-on-2 sandwich of α-helices and has a Bacillus subtilis -like ligand-binding pocket in which E11Gln and B10Tyr form hydrogen bonds to a ligand. However, due to differences in tunnel cavity and gate residue (E7Ala), it might not show similar ligand-binding kinetics as in Bs-HbO (E7Thr). The immunolocalization showed that PttTrHb protein was present in roots, stems as well as leaves of in vitro -grown hybrid aspens. In mature organs, PttTrHb was predominantly found in the vascular bundles and specifically at the site of lateral root formation, overlapping consistently with areas of nitric oxide (NO) production in plants. Furthermore, the NO donor sodium nitroprusside treatment increased the amount of PttTrHb in stems. The observed PttTrHb localization suggests that PttTrHb plays a role in the NO metabolism. Public Library of Science 2014-02-10 /pmc/articles/PMC3919811/ /pubmed/24520401 http://dx.doi.org/10.1371/journal.pone.0088573 Text en © 2014 Dumont et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Dumont, Estelle
Jokipii-Lukkari, Soile
Parkash, Vimal
Vuosku, Jaana
Sundström, Robin
Nymalm, Yvonne
Sutela, Suvi
Taskinen, Katariina
Kallio, Pauli T.
Salminen, Tiina A.
Häggman, Hely
Evolution, Three-Dimensional Model and Localization of Truncated Hemoglobin PttTrHb of Hybrid Aspen
title Evolution, Three-Dimensional Model and Localization of Truncated Hemoglobin PttTrHb of Hybrid Aspen
title_full Evolution, Three-Dimensional Model and Localization of Truncated Hemoglobin PttTrHb of Hybrid Aspen
title_fullStr Evolution, Three-Dimensional Model and Localization of Truncated Hemoglobin PttTrHb of Hybrid Aspen
title_full_unstemmed Evolution, Three-Dimensional Model and Localization of Truncated Hemoglobin PttTrHb of Hybrid Aspen
title_short Evolution, Three-Dimensional Model and Localization of Truncated Hemoglobin PttTrHb of Hybrid Aspen
title_sort evolution, three-dimensional model and localization of truncated hemoglobin ptttrhb of hybrid aspen
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3919811/
https://www.ncbi.nlm.nih.gov/pubmed/24520401
http://dx.doi.org/10.1371/journal.pone.0088573
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