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Identification and characterization of Arabidopsis AtNUDX9 as a GDP-d-mannose pyrophosphohydrolase: its involvement in root growth inhibition in response to ammonium

GDP-d-mannose (GDP-d-Man) is an important intermediate in ascorbic acid (AsA) synthesis, cell wall synthesis, protein N-glycosylation, and glycosylphosphatidylinositol-anchoring in plants. Thus, the modulation of intracellular levels of GDP-d-Man could be important for maintaining various cellular p...

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Autores principales: Tanaka, Hiroyuki, Maruta, Takanori, Ogawa, Takahisa, Tanabe, Noriaki, Tamoi, Masahiro, Yoshimura, Kazuya, Shigeoka, Shigeru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4566977/
https://www.ncbi.nlm.nih.gov/pubmed/26049160
http://dx.doi.org/10.1093/jxb/erv281
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author Tanaka, Hiroyuki
Maruta, Takanori
Ogawa, Takahisa
Tanabe, Noriaki
Tamoi, Masahiro
Yoshimura, Kazuya
Shigeoka, Shigeru
author_facet Tanaka, Hiroyuki
Maruta, Takanori
Ogawa, Takahisa
Tanabe, Noriaki
Tamoi, Masahiro
Yoshimura, Kazuya
Shigeoka, Shigeru
author_sort Tanaka, Hiroyuki
collection PubMed
description GDP-d-mannose (GDP-d-Man) is an important intermediate in ascorbic acid (AsA) synthesis, cell wall synthesis, protein N-glycosylation, and glycosylphosphatidylinositol-anchoring in plants. Thus, the modulation of intracellular levels of GDP-d-Man could be important for maintaining various cellular processes. Here an Arabidopsis GDP-d-Man pyrophosphohydrolase, AtNUDX9 (AtNUDT9; At3g46200), which hydrolysed GDP-d-Man to GMP and mannose 1-phosphate, was identified. The K (m) and V (max) values for GDP-d-Man of AtNUDX9 were 376±24 μM and 1.61±0.15 μmol min(–1) mg(–1) protein, respectively. Among various tissues, the expression levels of AtNUDX9 and the total activity of GDP-d-Man pyrophosphohydrolase were the highest in the roots. The GDP-d-Man pyrophosphohydrolase activity was increased in the root of plants grown in the presence of ammonium. No difference was observed in the levels of AsA in the leaf and root tissues of the wild-type and knockout-nudx9 (KO-nudx9) plants, whereas a marked increase in N-glycoprotein levels and enhanced growth were detected in the roots of KO-nudx9 plants in the presence of ammonium. These results suggest that AtNUDX9 is involved in the regulation of GDP-d-Man levels affecting ammonium sensitivity via modulation of protein N-glycosylation in the roots.
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spelling pubmed-45669772015-09-15 Identification and characterization of Arabidopsis AtNUDX9 as a GDP-d-mannose pyrophosphohydrolase: its involvement in root growth inhibition in response to ammonium Tanaka, Hiroyuki Maruta, Takanori Ogawa, Takahisa Tanabe, Noriaki Tamoi, Masahiro Yoshimura, Kazuya Shigeoka, Shigeru J Exp Bot Research Paper GDP-d-mannose (GDP-d-Man) is an important intermediate in ascorbic acid (AsA) synthesis, cell wall synthesis, protein N-glycosylation, and glycosylphosphatidylinositol-anchoring in plants. Thus, the modulation of intracellular levels of GDP-d-Man could be important for maintaining various cellular processes. Here an Arabidopsis GDP-d-Man pyrophosphohydrolase, AtNUDX9 (AtNUDT9; At3g46200), which hydrolysed GDP-d-Man to GMP and mannose 1-phosphate, was identified. The K (m) and V (max) values for GDP-d-Man of AtNUDX9 were 376±24 μM and 1.61±0.15 μmol min(–1) mg(–1) protein, respectively. Among various tissues, the expression levels of AtNUDX9 and the total activity of GDP-d-Man pyrophosphohydrolase were the highest in the roots. The GDP-d-Man pyrophosphohydrolase activity was increased in the root of plants grown in the presence of ammonium. No difference was observed in the levels of AsA in the leaf and root tissues of the wild-type and knockout-nudx9 (KO-nudx9) plants, whereas a marked increase in N-glycoprotein levels and enhanced growth were detected in the roots of KO-nudx9 plants in the presence of ammonium. These results suggest that AtNUDX9 is involved in the regulation of GDP-d-Man levels affecting ammonium sensitivity via modulation of protein N-glycosylation in the roots. Oxford University Press 2015-09 2015-06-06 /pmc/articles/PMC4566977/ /pubmed/26049160 http://dx.doi.org/10.1093/jxb/erv281 Text en © The Author 2015. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Tanaka, Hiroyuki
Maruta, Takanori
Ogawa, Takahisa
Tanabe, Noriaki
Tamoi, Masahiro
Yoshimura, Kazuya
Shigeoka, Shigeru
Identification and characterization of Arabidopsis AtNUDX9 as a GDP-d-mannose pyrophosphohydrolase: its involvement in root growth inhibition in response to ammonium
title Identification and characterization of Arabidopsis AtNUDX9 as a GDP-d-mannose pyrophosphohydrolase: its involvement in root growth inhibition in response to ammonium
title_full Identification and characterization of Arabidopsis AtNUDX9 as a GDP-d-mannose pyrophosphohydrolase: its involvement in root growth inhibition in response to ammonium
title_fullStr Identification and characterization of Arabidopsis AtNUDX9 as a GDP-d-mannose pyrophosphohydrolase: its involvement in root growth inhibition in response to ammonium
title_full_unstemmed Identification and characterization of Arabidopsis AtNUDX9 as a GDP-d-mannose pyrophosphohydrolase: its involvement in root growth inhibition in response to ammonium
title_short Identification and characterization of Arabidopsis AtNUDX9 as a GDP-d-mannose pyrophosphohydrolase: its involvement in root growth inhibition in response to ammonium
title_sort identification and characterization of arabidopsis atnudx9 as a gdp-d-mannose pyrophosphohydrolase: its involvement in root growth inhibition in response to ammonium
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4566977/
https://www.ncbi.nlm.nih.gov/pubmed/26049160
http://dx.doi.org/10.1093/jxb/erv281
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