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Alanine synthesized by alanine dehydrogenase enables ammonium-tolerant nitrogen fixation in Paenibacillus sabinae T27

Most diazotrophs fix nitrogen only under nitrogen-limiting conditions, for example, in the presence of relatively low concentrations of NH(4)(+) (0 to 2 mM). However, Paenibacillus sabinae T27 exhibits an unusual pattern of nitrogen regulation of nitrogen fixation, since although nitrogenase activit...

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Autores principales: Li, Qin, Zhang, Haowei, Song, Yi, Wang, Minyang, Hua, Chongchong, Li, Yashi, Chen, Sanfeng, Dixon, Ray, Li, Jilun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9894248/
https://www.ncbi.nlm.nih.gov/pubmed/36459643
http://dx.doi.org/10.1073/pnas.2215855119
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author Li, Qin
Zhang, Haowei
Song, Yi
Wang, Minyang
Hua, Chongchong
Li, Yashi
Chen, Sanfeng
Dixon, Ray
Li, Jilun
author_facet Li, Qin
Zhang, Haowei
Song, Yi
Wang, Minyang
Hua, Chongchong
Li, Yashi
Chen, Sanfeng
Dixon, Ray
Li, Jilun
author_sort Li, Qin
collection PubMed
description Most diazotrophs fix nitrogen only under nitrogen-limiting conditions, for example, in the presence of relatively low concentrations of NH(4)(+) (0 to 2 mM). However, Paenibacillus sabinae T27 exhibits an unusual pattern of nitrogen regulation of nitrogen fixation, since although nitrogenase activities are high under nitrogen-limiting conditions (0 to 3 mM NH(4)(+)) and are repressed under conditions of nitrogen sufficiency (4 to 30 mM NH(4)(+)), nitrogenase activity is reestablished when very high levels of NH(4)(+) (30 to 300 mM) are present in the medium. To further understand this pattern of nitrogen fixation regulation, we carried out transcriptome analyses of P. sabinae T27 in response to increasing ammonium concentrations. As anticipated, the nif genes were highly expressed, either in the absence of fixed nitrogen or in the presence of a high concentration of NH(4)(+) (100 mM), but were subject to negative feedback regulation at an intermediate concentration of NH(4)(+) (10 mM). Among the differentially expressed genes, ald1, encoding alanine dehydrogenase (ADH1), was highly expressed in the presence of a high level of NH(4)(+) (100 mM). Mutation and complementation experiments revealed that ald1 is required for nitrogen fixation at high ammonium concentrations. We demonstrate that alanine, synthesized by ADH1 from pyruvate and NH(4)(+), inhibits GS activity, leading to a low intracellular glutamine concentration that prevents feedback inhibition of GS and mimics nitrogen limitation, enabling activation of nif transcription by the nitrogen-responsive regulator GlnR in the presence of high levels of extracellular ammonium.
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spelling pubmed-98942482023-02-03 Alanine synthesized by alanine dehydrogenase enables ammonium-tolerant nitrogen fixation in Paenibacillus sabinae T27 Li, Qin Zhang, Haowei Song, Yi Wang, Minyang Hua, Chongchong Li, Yashi Chen, Sanfeng Dixon, Ray Li, Jilun Proc Natl Acad Sci U S A Biological Sciences Most diazotrophs fix nitrogen only under nitrogen-limiting conditions, for example, in the presence of relatively low concentrations of NH(4)(+) (0 to 2 mM). However, Paenibacillus sabinae T27 exhibits an unusual pattern of nitrogen regulation of nitrogen fixation, since although nitrogenase activities are high under nitrogen-limiting conditions (0 to 3 mM NH(4)(+)) and are repressed under conditions of nitrogen sufficiency (4 to 30 mM NH(4)(+)), nitrogenase activity is reestablished when very high levels of NH(4)(+) (30 to 300 mM) are present in the medium. To further understand this pattern of nitrogen fixation regulation, we carried out transcriptome analyses of P. sabinae T27 in response to increasing ammonium concentrations. As anticipated, the nif genes were highly expressed, either in the absence of fixed nitrogen or in the presence of a high concentration of NH(4)(+) (100 mM), but were subject to negative feedback regulation at an intermediate concentration of NH(4)(+) (10 mM). Among the differentially expressed genes, ald1, encoding alanine dehydrogenase (ADH1), was highly expressed in the presence of a high level of NH(4)(+) (100 mM). Mutation and complementation experiments revealed that ald1 is required for nitrogen fixation at high ammonium concentrations. We demonstrate that alanine, synthesized by ADH1 from pyruvate and NH(4)(+), inhibits GS activity, leading to a low intracellular glutamine concentration that prevents feedback inhibition of GS and mimics nitrogen limitation, enabling activation of nif transcription by the nitrogen-responsive regulator GlnR in the presence of high levels of extracellular ammonium. National Academy of Sciences 2022-12-02 2022-12-06 /pmc/articles/PMC9894248/ /pubmed/36459643 http://dx.doi.org/10.1073/pnas.2215855119 Text en Copyright © 2022 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Li, Qin
Zhang, Haowei
Song, Yi
Wang, Minyang
Hua, Chongchong
Li, Yashi
Chen, Sanfeng
Dixon, Ray
Li, Jilun
Alanine synthesized by alanine dehydrogenase enables ammonium-tolerant nitrogen fixation in Paenibacillus sabinae T27
title Alanine synthesized by alanine dehydrogenase enables ammonium-tolerant nitrogen fixation in Paenibacillus sabinae T27
title_full Alanine synthesized by alanine dehydrogenase enables ammonium-tolerant nitrogen fixation in Paenibacillus sabinae T27
title_fullStr Alanine synthesized by alanine dehydrogenase enables ammonium-tolerant nitrogen fixation in Paenibacillus sabinae T27
title_full_unstemmed Alanine synthesized by alanine dehydrogenase enables ammonium-tolerant nitrogen fixation in Paenibacillus sabinae T27
title_short Alanine synthesized by alanine dehydrogenase enables ammonium-tolerant nitrogen fixation in Paenibacillus sabinae T27
title_sort alanine synthesized by alanine dehydrogenase enables ammonium-tolerant nitrogen fixation in paenibacillus sabinae t27
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9894248/
https://www.ncbi.nlm.nih.gov/pubmed/36459643
http://dx.doi.org/10.1073/pnas.2215855119
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