RRC ID 55517
著者 Tsurumaru H, Ito N, Mori K, Wakai S, Uchiyama T, Iino T, Hosoyama A, Ataku H, Nishijima K, Mise M, Shimizu A, Harada T, Horikawa H, Ichikawa N, Sekigawa T, Jinno K, Tanikawa S, Yamazaki J, Sasaki K, Yamazaki S, Fujita N, Harayama S.
タイトル An extracellular [NiFe] hydrogenase mediating iron corrosion is encoded in a genetically unstable genomic island in Methanococcus maripaludis.
ジャーナル Sci Rep
Abstract Certain methanogens deteriorate steel surfaces through a process called microbiologically influenced corrosion (MIC). However, the mechanisms of MIC, whereby methanogens oxidize zerovalent iron (Fe0), are largely unknown. In this study, Fe0-corroding Methanococcus maripaludis strain OS7 and its derivative (strain OS7mut1) defective in Fe0-corroding activity were isolated. Genomic analysis of these strains demonstrated that the strain OS7mut1 contained a 12-kb chromosomal deletion. The deleted region, termed "MIC island", encoded the genes for the large and small subunits of a [NiFe] hydrogenase, the TatA/TatC genes necessary for the secretion of the [NiFe] hydrogenase, and a gene for the hydrogenase maturation protease. Thus, the [NiFe] hydrogenase may be secreted outside the cytoplasmic membrane, where the [NiFe] hydrogenase can make direct contact with Fe0, and oxidize it, generating hydrogen gas: Fe0 + 2 H+ → Fe2+ + H2. Comparative analysis of extracellular and intracellular proteomes of strain OS7 supported this hypothesis. The identification of the MIC genes enables the development of molecular tools to monitor epidemiology, and to perform surveillance and risk assessment of MIC-inducing M. maripaludis.
巻・号 8(1)
ページ 15149
公開日 2018-10-11
DOI 10.1038/s41598-018-33541-5
PII 10.1038/s41598-018-33541-5
PMID 30310166
PMC PMC6181927
MeSH Anti-Bacterial Agents / pharmacology Base Sequence Corrosion Gene Order Genome, Bacterial* Genomic Instability Genomic Islands* Hydrogenase / genetics* Hydrogenase / metabolism* Iron / metabolism* Methanococcus / drug effects Methanococcus / genetics* Methanococcus / metabolism* Microbial Sensitivity Tests Models, Theoretical Oxidation-Reduction
IF 4.011
引用数 5
リソース情報
一般微生物 JCM 10012 JCM 10013