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Use of rare‐earth elements in the phyllosphere colonizer Methylobacterium extorquens PA1

Until recently, rare‐earth elements (REEs) had been thought to be biologically inactive. This view changed with the discovery of the methanol dehydrogenase XoxF that strictly relies on REEs for its activity. Some methylotrophs only contain xoxF, while others, including the model phyllosphere coloniz...

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Autores principales: Ochsner, Andrea M., Hemmerle, Lucas, Vonderach, Thomas, Nüssli, Ralph, Bortfeld‐Miller, Miriam, Hattendorf, Bodo, Vorholt, Julia A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6850437/
https://www.ncbi.nlm.nih.gov/pubmed/30653750
http://dx.doi.org/10.1111/mmi.14208
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author Ochsner, Andrea M.
Hemmerle, Lucas
Vonderach, Thomas
Nüssli, Ralph
Bortfeld‐Miller, Miriam
Hattendorf, Bodo
Vorholt, Julia A.
author_facet Ochsner, Andrea M.
Hemmerle, Lucas
Vonderach, Thomas
Nüssli, Ralph
Bortfeld‐Miller, Miriam
Hattendorf, Bodo
Vorholt, Julia A.
author_sort Ochsner, Andrea M.
collection PubMed
description Until recently, rare‐earth elements (REEs) had been thought to be biologically inactive. This view changed with the discovery of the methanol dehydrogenase XoxF that strictly relies on REEs for its activity. Some methylotrophs only contain xoxF, while others, including the model phyllosphere colonizer Methylobacterium extorquens PA1, harbor this gene in addition to mxaFI encoding a Ca(2+)‐dependent enzyme. Here we found that REEs induce the expression of xoxF in M. extorquens PA1, while repressing mxaFI, suggesting that XoxF is the preferred methanol dehydrogenase in the presence of sufficient amounts of REE. Using reporter assays and a suppressor screen, we found that lanthanum (La(3+)) is sensed both in a XoxF‐dependent and independent manner. Furthermore, we investigated the role of REEs during Arabidopsis thaliana colonization. Element analysis of the phyllosphere revealed the presence of several REEs at concentrations up to 10 μg per g dry weight. Complementary proteome analyses of M. extorquens PA1 identified XoxF as a top induced protein in planta and a core set of La(3+)‐regulated proteins under defined artificial media conditions. Among these was a REE‐binding protein that is encoded next to a gene for a TonB‐dependent transporter. The latter was essential for REE‐dependent growth on methanol indicating chelator‐assisted uptake of REEs.
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spelling pubmed-68504372019-11-18 Use of rare‐earth elements in the phyllosphere colonizer Methylobacterium extorquens PA1 Ochsner, Andrea M. Hemmerle, Lucas Vonderach, Thomas Nüssli, Ralph Bortfeld‐Miller, Miriam Hattendorf, Bodo Vorholt, Julia A. Mol Microbiol Research Articles Until recently, rare‐earth elements (REEs) had been thought to be biologically inactive. This view changed with the discovery of the methanol dehydrogenase XoxF that strictly relies on REEs for its activity. Some methylotrophs only contain xoxF, while others, including the model phyllosphere colonizer Methylobacterium extorquens PA1, harbor this gene in addition to mxaFI encoding a Ca(2+)‐dependent enzyme. Here we found that REEs induce the expression of xoxF in M. extorquens PA1, while repressing mxaFI, suggesting that XoxF is the preferred methanol dehydrogenase in the presence of sufficient amounts of REE. Using reporter assays and a suppressor screen, we found that lanthanum (La(3+)) is sensed both in a XoxF‐dependent and independent manner. Furthermore, we investigated the role of REEs during Arabidopsis thaliana colonization. Element analysis of the phyllosphere revealed the presence of several REEs at concentrations up to 10 μg per g dry weight. Complementary proteome analyses of M. extorquens PA1 identified XoxF as a top induced protein in planta and a core set of La(3+)‐regulated proteins under defined artificial media conditions. Among these was a REE‐binding protein that is encoded next to a gene for a TonB‐dependent transporter. The latter was essential for REE‐dependent growth on methanol indicating chelator‐assisted uptake of REEs. John Wiley and Sons Inc. 2019-02-17 2019-05 /pmc/articles/PMC6850437/ /pubmed/30653750 http://dx.doi.org/10.1111/mmi.14208 Text en © 2019 The Authors Molecular Microbiology Published by John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Research Articles
Ochsner, Andrea M.
Hemmerle, Lucas
Vonderach, Thomas
Nüssli, Ralph
Bortfeld‐Miller, Miriam
Hattendorf, Bodo
Vorholt, Julia A.
Use of rare‐earth elements in the phyllosphere colonizer Methylobacterium extorquens PA1
title Use of rare‐earth elements in the phyllosphere colonizer Methylobacterium extorquens PA1
title_full Use of rare‐earth elements in the phyllosphere colonizer Methylobacterium extorquens PA1
title_fullStr Use of rare‐earth elements in the phyllosphere colonizer Methylobacterium extorquens PA1
title_full_unstemmed Use of rare‐earth elements in the phyllosphere colonizer Methylobacterium extorquens PA1
title_short Use of rare‐earth elements in the phyllosphere colonizer Methylobacterium extorquens PA1
title_sort use of rare‐earth elements in the phyllosphere colonizer methylobacterium extorquens pa1
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6850437/
https://www.ncbi.nlm.nih.gov/pubmed/30653750
http://dx.doi.org/10.1111/mmi.14208
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