Literature DB >> 19432805

In vivo role of three fused corrinoid/methyl transfer proteins in Methanosarcina acetivorans.

Ellen Oelgeschläger1, Michael Rother.   

Abstract

Methanosarcina acetivorans is able to use carbon monoxide (CO) as the sole source of energy for growth. Its carboxidotrophic growth is peculiar as it involves formation of acetate, formate and methylated thiols, besides methane. Under this condition three proteins homologous to both corrinoid proteins and methyltransferases (MA0859, MA4384 and MA4558) are highly abundant. To address their role in M. acetivorans, a set of single and double mutants, and the triple mutant, was constructed by deletion/disruption of the encoding genes. Phenotypic analysis of the mutants rules out an important role of the methyltransferase homologues in the CO(2) reduction pathway of methanogenesis. Instead, the single and double mutants were affected to various degrees in their capacity to generate dimethylsulphide (DMS) from CO and to form methane from DMS. The triple mutant was unable to produce or metabolize DMS, and could not grow with DMS as the sole energy source, which demonstrates that MA0859, MA4384 and MA4558 are involved in, and required for, methylsulphide metabolism of M. acetivorans. Based on these findings we propose to designate MA0859, MA4384 and MA4558 as methyltransferases specific for methylsulphides, MtsD, MtsF and MtsH respectively.

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Year:  2009        PMID: 19432805     DOI: 10.1111/j.1365-2958.2009.06723.x

Source DB:  PubMed          Journal:  Mol Microbiol        ISSN: 0950-382X            Impact factor:   3.501


  20 in total

1.  Biochemical Characterization of the Methylmercaptopropionate:Cob(I)alamin Methyltransferase from Methanosarcina acetivorans.

Authors:  He Fu; Michelle N Goettge; William W Metcalf
Journal:  J Bacteriol       Date:  2019-05-22       Impact factor: 3.490

2.  Reducing the genetic code induces massive rearrangement of the proteome.

Authors:  Patrick O'Donoghue; Laure Prat; Martin Kucklick; Johannes G Schäfer; Katharina Riedel; Jesse Rinehart; Dieter Söll; Ilka U Heinemann
Journal:  Proc Natl Acad Sci U S A       Date:  2014-11-17       Impact factor: 11.205

3.  Genome-scale metabolic reconstruction and hypothesis testing in the methanogenic archaeon Methanosarcina acetivorans C2A.

Authors:  Matthew N Benedict; Matthew C Gonnerman; William W Metcalf; Nathan D Price
Journal:  J Bacteriol       Date:  2011-12-02       Impact factor: 3.490

4.  Role of the fused corrinoid/methyl transfer protein CmtA during CO-dependent growth of Methanosarcina acetivorans.

Authors:  Venkata R Vepachedu; James G Ferry
Journal:  J Bacteriol       Date:  2012-05-25       Impact factor: 3.490

5.  Genetic basis for metabolism of methylated sulfur compounds in Methanosarcina species.

Authors:  He Fu; William W Metcalf
Journal:  J Bacteriol       Date:  2015-02-17       Impact factor: 3.490

6.  Assessing methanotrophy and carbon fixation for biofuel production by Methanosarcina acetivorans.

Authors:  Hadi Nazem-Bokaee; Saratram Gopalakrishnan; James G Ferry; Thomas K Wood; Costas D Maranas
Journal:  Microb Cell Fact       Date:  2016-01-17       Impact factor: 5.328

7.  Chasing the elusive Euryarchaeota class WSA2: genomes reveal a uniquely fastidious methyl-reducing methanogen.

Authors:  Masaru Konishi Nobu; Takashi Narihiro; Kyohei Kuroda; Ran Mei; Wen-Tso Liu
Journal:  ISME J       Date:  2016-03-04       Impact factor: 10.302

Review 8.  Genetic code flexibility in microorganisms: novel mechanisms and impact on physiology.

Authors:  Jiqiang Ling; Patrick O'Donoghue; Dieter Söll
Journal:  Nat Rev Microbiol       Date:  2015-09-22       Impact factor: 60.633

9.  A heme-based redox sensor in the methanogenic archaeon Methanosarcina acetivorans.

Authors:  Bastian Molitor; Marc Stassen; Anuja Modi; Samir F El-Mashtoly; Christoph Laurich; Wolfgang Lubitz; John H Dawson; Michael Rother; Nicole Frankenberg-Dinkel
Journal:  J Biol Chem       Date:  2013-05-09       Impact factor: 5.157

10.  Genetic manipulation of Methanosarcina spp.

Authors:  Petra R A Kohler; William W Metcalf
Journal:  Front Microbiol       Date:  2012-07-24       Impact factor: 5.640

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