Open Access
Open access
Archaea, volume 2011, pages 1-23

More Than 200 Genes Required for Methane Formation from H2and CO2and Energy Conservation Are Present inMethanothermobacter marburgensisandMethanothermobacter thermautotrophicus

Publication typeJournal Article
Publication date2011-11-10
Journal: Archaea
scimago Q2
SJR0.489
CiteScore7.5
Impact factor2.3
ISSN14723646, 14723654
PubMed ID:  21559116
Microbiology
Physiology
Ecology, Evolution, Behavior and Systematics
Abstract

The hydrogenotrophic methanogensMethanothermobacter marburgensisandMethanothermobacter thermautotrophicuscan easily be mass cultured. They have therefore been used almost exclusively to study the biochemistry of methanogenesis from H2and CO2, and the genomes of these two model organisms have been sequenced. The close relationship of the two organisms is reflected in their genomic architecture and coding potential. Within the 1,607 protein coding sequences (CDS) in common, we identified approximately 200 CDS required for the synthesis of the enzymes, coenzymes, and prosthetic groups involved in CO2reduction to methane and in coupling this process with the phosphorylation of ADP. Approximately 20 additional genes, such as those for the biosynthesis of F430and methanofuran and for the posttranslational modifications of the two methyl-coenzyme M reductases, remain to be identified.

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