Literature DB >> 27190151

Uptake and effect of rare earth elements on gene expression in Methylosinus trichosporium OB3b.

Wenyu Gu1, Muhammad Farhan Ul Haque1, Alan A DiSpirito2, Jeremy D Semrau3.   

Abstract

It is well known that Methylosinus trichosporium OB3b has two forms of methane monooxygenase (MMO) responsible for the initial conversion of methane to methanol, a cytoplasmic (soluble) methane monooxygenase and a membrane-associated (particulate) methane monooxygenase, and that copper strongly regulates expression of these alternative forms of MMO. More recently, it has been discovered that M. trichosporium OB3b has multiple types of the methanol dehydrogenase (MeDH), i.e. the Mxa-type MeDH (Mxa-MeDH) and Xox-type MeDH (Xox-MeDH), and the expression of these two forms is regulated by the availability of the rare earth element (REE), cerium. Here, we extend these studies and show that lanthanum, praseodymium, neodymium and samarium also regulate expression of alternative forms of MeDH. The effect of these REEs on MeDH expression, however, was only observed in the absence of copper. Further, a mutant of M. trichosporium OB3b, where the Mxa-MeDH was knocked out, was able to grow in the presence of lanthanum, praseodymium and neodymium, but was not able to grow in the presence of samarium. Collectively, these data suggest that multiple levels of gene regulation by metals exist in M. trichosporium OB3b, but that copper overrides the effect of other metals by an as yet unknown mechanism. © FEMS 2016. All rights reserved. For permissions, please e-mail: journals.permissions@oup.com.

Entities:  

Keywords:  copper; methane monooxygenase; methanol dehydrogenase; methanotrophy; rare earth elements

Mesh:

Substances:

Year:  2016        PMID: 27190151     DOI: 10.1093/femsle/fnw129

Source DB:  PubMed          Journal:  FEMS Microbiol Lett        ISSN: 0378-1097            Impact factor:   2.742


  17 in total

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9.  MxaY regulates the lanthanide-mediated methanol dehydrogenase switch in Methylomicrobium buryatense.

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10.  Physiological Effect of XoxG(4) on Lanthanide-Dependent Methanotrophy.

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