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A Plant Gene Encoding One-Heme and Two-Heme Hemoglobins With Extreme Reactivities Toward Diatomic Gases and Nitrite

In plants, symbiotic hemoglobins act as carriers and buffers of O(2) in nodules, whereas nonsymbiotic hemoglobins or phytoglobins (Glbs) are ubiquitous in tissues and may perform multiple, but still poorly defined, functions related to O(2) and/or nitric oxide (NO). Here, we have identified a Glb ge...

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Autores principales: Villar, Irene, Larrainzar, Estíbaliz, Milazzo, Lisa, Pérez-Rontomé, Carmen, Rubio, Maria C., Smulevich, Giulietta, Martínez, Jesús I., Wilson, Michael T., Reeder, Brandon, Huertas, Raul, Abbruzzetti, Stefania, Udvardi, Michael, Becana, Manuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7710986/
https://www.ncbi.nlm.nih.gov/pubmed/33329665
http://dx.doi.org/10.3389/fpls.2020.600336
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author Villar, Irene
Larrainzar, Estíbaliz
Milazzo, Lisa
Pérez-Rontomé, Carmen
Rubio, Maria C.
Smulevich, Giulietta
Martínez, Jesús I.
Wilson, Michael T.
Reeder, Brandon
Huertas, Raul
Abbruzzetti, Stefania
Udvardi, Michael
Becana, Manuel
author_facet Villar, Irene
Larrainzar, Estíbaliz
Milazzo, Lisa
Pérez-Rontomé, Carmen
Rubio, Maria C.
Smulevich, Giulietta
Martínez, Jesús I.
Wilson, Michael T.
Reeder, Brandon
Huertas, Raul
Abbruzzetti, Stefania
Udvardi, Michael
Becana, Manuel
author_sort Villar, Irene
collection PubMed
description In plants, symbiotic hemoglobins act as carriers and buffers of O(2) in nodules, whereas nonsymbiotic hemoglobins or phytoglobins (Glbs) are ubiquitous in tissues and may perform multiple, but still poorly defined, functions related to O(2) and/or nitric oxide (NO). Here, we have identified a Glb gene of the model legume Medicago truncatula with unique properties. The gene, designated MtGlb1-2, generates four alternative splice forms encoding Glbs with one or two heme domains and 215–351 amino acid residues. This is more than double the size of any hemoglobin from plants or other organisms described so far. A combination of molecular, cellular, biochemical, and biophysical methods was used to characterize these novel proteins. RNA-sequencing showed that the four splice variants are expressed in plant tissues. MtGlb1-2 is transcriptionally activated by hypoxia and its expression is further enhanced by an NO source. The gene is preferentially expressed in the meristems and vascular bundles of roots and nodules. Two of the proteins, bearing one or two hemes, were characterized using mutants in the distal histidines of the hemes. The Glbs are extremely reactive toward the physiological ligands O(2), NO, and nitrite. They show very high O(2) affinities, NO dioxygenase activity (in the presence of O(2)), and nitrite reductase (NiR) activity (in the absence of O(2)) compared with the hemoglobins from vertebrates and other plants. We propose that these Glbs act as either NO scavengers or NO producers depending on the O(2) tension in the plant tissue, being involved in the fast and fine tuning of NO concentration in the cytosol in response to sudden changes in O(2) availability.
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spelling pubmed-77109862020-12-15 A Plant Gene Encoding One-Heme and Two-Heme Hemoglobins With Extreme Reactivities Toward Diatomic Gases and Nitrite Villar, Irene Larrainzar, Estíbaliz Milazzo, Lisa Pérez-Rontomé, Carmen Rubio, Maria C. Smulevich, Giulietta Martínez, Jesús I. Wilson, Michael T. Reeder, Brandon Huertas, Raul Abbruzzetti, Stefania Udvardi, Michael Becana, Manuel Front Plant Sci Plant Science In plants, symbiotic hemoglobins act as carriers and buffers of O(2) in nodules, whereas nonsymbiotic hemoglobins or phytoglobins (Glbs) are ubiquitous in tissues and may perform multiple, but still poorly defined, functions related to O(2) and/or nitric oxide (NO). Here, we have identified a Glb gene of the model legume Medicago truncatula with unique properties. The gene, designated MtGlb1-2, generates four alternative splice forms encoding Glbs with one or two heme domains and 215–351 amino acid residues. This is more than double the size of any hemoglobin from plants or other organisms described so far. A combination of molecular, cellular, biochemical, and biophysical methods was used to characterize these novel proteins. RNA-sequencing showed that the four splice variants are expressed in plant tissues. MtGlb1-2 is transcriptionally activated by hypoxia and its expression is further enhanced by an NO source. The gene is preferentially expressed in the meristems and vascular bundles of roots and nodules. Two of the proteins, bearing one or two hemes, were characterized using mutants in the distal histidines of the hemes. The Glbs are extremely reactive toward the physiological ligands O(2), NO, and nitrite. They show very high O(2) affinities, NO dioxygenase activity (in the presence of O(2)), and nitrite reductase (NiR) activity (in the absence of O(2)) compared with the hemoglobins from vertebrates and other plants. We propose that these Glbs act as either NO scavengers or NO producers depending on the O(2) tension in the plant tissue, being involved in the fast and fine tuning of NO concentration in the cytosol in response to sudden changes in O(2) availability. Frontiers Media S.A. 2020-11-19 /pmc/articles/PMC7710986/ /pubmed/33329665 http://dx.doi.org/10.3389/fpls.2020.600336 Text en Copyright © 2020 Villar, Larrainzar, Milazzo, Pérez-Rontomé, Rubio, Smulevich, Martínez, Wilson, Reeder, Huertas, Abbruzzetti, Udvardi and Becana. 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
Villar, Irene
Larrainzar, Estíbaliz
Milazzo, Lisa
Pérez-Rontomé, Carmen
Rubio, Maria C.
Smulevich, Giulietta
Martínez, Jesús I.
Wilson, Michael T.
Reeder, Brandon
Huertas, Raul
Abbruzzetti, Stefania
Udvardi, Michael
Becana, Manuel
A Plant Gene Encoding One-Heme and Two-Heme Hemoglobins With Extreme Reactivities Toward Diatomic Gases and Nitrite
title A Plant Gene Encoding One-Heme and Two-Heme Hemoglobins With Extreme Reactivities Toward Diatomic Gases and Nitrite
title_full A Plant Gene Encoding One-Heme and Two-Heme Hemoglobins With Extreme Reactivities Toward Diatomic Gases and Nitrite
title_fullStr A Plant Gene Encoding One-Heme and Two-Heme Hemoglobins With Extreme Reactivities Toward Diatomic Gases and Nitrite
title_full_unstemmed A Plant Gene Encoding One-Heme and Two-Heme Hemoglobins With Extreme Reactivities Toward Diatomic Gases and Nitrite
title_short A Plant Gene Encoding One-Heme and Two-Heme Hemoglobins With Extreme Reactivities Toward Diatomic Gases and Nitrite
title_sort plant gene encoding one-heme and two-heme hemoglobins with extreme reactivities toward diatomic gases and nitrite
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7710986/
https://www.ncbi.nlm.nih.gov/pubmed/33329665
http://dx.doi.org/10.3389/fpls.2020.600336
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