Literature DB >> 32486139

Lanthanide-Dependent Methanol and Formaldehyde Oxidation in Methylobacterium aquaticum Strain 22A.

Patcha Yanpirat1, Yukari Nakatsuji1, Shota Hiraga1, Yoshiko Fujitani1, Terumi Izumi1, Sachiko Masuda1,2,3, Ryoji Mitsui4, Tomoyuki Nakagawa5,6, Akio Tani1.   

Abstract

Lanthanides (Ln) are an essential cofactor for XoxF-type methanol dehydrogenases (MDHs) in Gram-negative methylotrophs. The Ln3+ dependency of XoxF has expanded knowledge and raised new questions in methylotrophy, including the differences in characteristics of XoxF-type MDHs, their regulation, and the methylotrophic metabolism including formaldehyde oxidation. In this study, we genetically identified one set of Ln3+- and Ca2+-dependent MDHs (XoxF1 and MxaFI), that are involved in methylotrophy, and an ExaF-type Ln3+-dependent ethanol dehydrogenase, among six MDH-like genes in Methylobacterium aquaticum strain 22A. We also identified the causative mutations in MxbD, a sensor kinase necessary for mxaF expression and xoxF1 repression, for suppressive phenotypes in xoxF1 mutants defective in methanol growth even in the absence of Ln3+. Furthermore, we examined the phenotypes of a series of formaldehyde oxidation-pathway mutants (fae1, fae2, mch in the tetrahydromethanopterin (H4MPT) pathway and hgd in the glutathione-dependent formaldehyde dehydrogenase (GSH) pathway). We found that MxaF produces formaldehyde to a toxic level in the absence of the formaldehyde oxidation pathways and that either XoxF1 or ExaF can oxidize formaldehyde to alleviate formaldehyde toxicity in vivo. Furthermore, the GSH pathway has a supportive role for the net formaldehyde oxidation in addition to the H4MPT pathway that has primary importance. Studies on methylotrophy in Methylobacterium species have a long history, and this study provides further insights into genetic and physiological diversity and the differences in methylotrophy within the plant-colonizing methylotrophs.

Entities:  

Keywords:  lanthanide, methylotroph, XoxF, methanol dehydrogenase, Methylobacterium species

Year:  2020        PMID: 32486139     DOI: 10.3390/microorganisms8060822

Source DB:  PubMed          Journal:  Microorganisms        ISSN: 2076-2607


  5 in total

1.  A Periplasmic Lanthanide Mediator, Lanmodulin, in Methylobacterium aquaticum Strain 22A.

Authors:  Yoshiko Fujitani; Takeshi Shibata; Akio Tani
Journal:  Front Microbiol       Date:  2022-06-23       Impact factor: 6.064

Review 2.  Unravelling Formaldehyde Metabolism in Bacteria: Road towards Synthetic Methylotrophy.

Authors:  Vivien Jessica Klein; Marta Irla; Marina Gil López; Trygve Brautaset; Luciana Fernandes Brito
Journal:  Microorganisms       Date:  2022-01-20

3.  Siderophore for Lanthanide and Iron Uptake for Methylotrophy and Plant Growth Promotion in Methylobacterium aquaticum Strain 22A.

Authors:  Patrick Otieno Juma; Yoshiko Fujitani; Ola Alessa; Tokitaka Oyama; Hiroya Yurimoto; Yasuyoshi Sakai; Akio Tani
Journal:  Front Microbiol       Date:  2022-07-07       Impact factor: 6.064

4.  The effect of lanthanum on growth and gene expression in a facultative methanotroph.

Authors:  Andrew T Crombie
Journal:  Environ Microbiol       Date:  2021-08-12       Impact factor: 5.476

Review 5.  Verrucomicrobial methanotrophs: ecophysiology of metabolically versatile acidophiles.

Authors:  Rob A Schmitz; Stijn H Peeters; Wouter Versantvoort; Nunzia Picone; Arjan Pol; Mike S M Jetten; Huub J M Op den Camp
Journal:  FEMS Microbiol Rev       Date:  2021-09-08       Impact factor: 16.408

  5 in total

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