New Mode of Energy Metabolism in the Seventh Order of Methanogens as Revealed by Comparative Genome Analysis of "Candidatus Methanoplasma termitum"

被引:192
作者
Lang, Kristina [1 ]
Schuldes, Joerg [2 ]
Klingl, Andreas [3 ]
Poehlein, Anja [2 ]
Daniel, Rolf [2 ]
Brune, Andreas [1 ,3 ]
机构
[1] Max Planck Inst Terr Microbiol, Dept Biogeochem, D-35043 Marburg, Germany
[2] Univ Gottingen, Inst Microbiol & Genet, Gottingen Genom Lab, D-37073 Gottingen, Germany
[3] Univ Marburg, LOEWE Ctr Synthet Microbiol, Marburg, Germany
关键词
METHANOMICROCOCCUS-BLATTICOLA; METHANOMASSILIICOCCUS-LUMINYENSIS; ELECTRON BIFURCATION; DIPHOSPHATE SYNTHASE; ECH HYDROGENASE; GEN; NOV; ARCHAEA; SEQUENCE; PROTEIN; NICKEL;
D O I
10.1128/AEM.03389-14
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
The recently discovered seventh order of methanogens, the Methanomassiliicoccales (previously referred to as "Methanoplasmatales"), so far consists exclusively of obligately hydrogen-dependent methylotrophs. We sequenced the complete genome of "Candidatus Methanoplasma termitum" from a highly enriched culture obtained from the intestinal tract of termites and compared it with the previously published genomes of three other strains from the human gut, including the first isolate of the order. Like all other strains, "Ca. Methanoplasma termitum" lacks the entire pathway for CO2 reduction to methyl coenzyme M and produces methane by hydrogen-dependent reduction of methanol or methylamines, which is consistent with additional physiological data. However, the shared absence of cytochromes and an energy-converting hydrogenase for the reoxidation of the ferredoxin produced by the soluble heterodisulfide reductase indicates that Methanomassiliicoccales employ a new mode of energy metabolism, which differs from that proposed for the obligately methylotrophic Methanosphaera stadtmanae. Instead, all strains possess a novel complex that is related to the F-420:methanophenazine oxidoreductase (Fpo) of Methanosarcinales but lacks an F-420-oxidizing module, resembling the apparently ferredoxin-dependent Fpo-like homolog in Methanosaeta thermophila. Since all Methanomassiliicoccales also lack the subunit E of the membrane-bound heterodisulfide reductase (HdrDE), we propose that the Fpo-like complex interacts directly with subunit D, forming an energy-converting ferredoxin: heterodisulfide oxidoreductase. The dual function of heterodisulfide in Methanomassiliicoccales, which serves both in electron bifurcation and as terminal acceptor in a membrane-associated redox process, may be a unique characteristic of the novel order.
引用
收藏
页码:1338 / 1352
页数:15
相关论文
共 87 条
[1]  
[Anonymous], ENCYLOPEDIA OF LIFE
[2]  
Bapteste Eric, 2005, Archaea, V1, P353, DOI 10.1155/2005/859728
[3]  
Bateman A, 2002, NUCLEIC ACIDS RES, V30, P276, DOI [10.1093/nar/gkp985, 10.1093/nar/gkh121, 10.1093/nar/gkr1065]
[4]   The Gene Ontology in 2010: extensions and refinements The Gene Ontology Consortium [J].
Berardini, Tanya Z. ;
Li, Donghui ;
Huala, Eva ;
Bridges, Susan ;
Burgess, Shane ;
McCarthy, Fiona ;
Carbon, Seth ;
Lewis, Suzanna E. ;
Mungall, Christopher J. ;
Abdulla, Amina ;
Wood, Valerie ;
Feltrin, Erika ;
Valle, Giorgio ;
Chisholm, Rex L. ;
Fey, Petra ;
Gaudet, Pascale ;
Kibbe, Warren ;
Basu, Siddhartha ;
Bushmanova, Yulia ;
Eilbeck, Karen ;
Siegele, Deborah A. ;
McIntosh, Brenley ;
Renfro, Daniel ;
Zweifel, Adrienne ;
Hu, James C. ;
Ashburner, Michael ;
Tweedie, Susan ;
Alam-Faruque, Yasmin ;
Apweiler, Rolf ;
Auchinchloss, Andrea ;
Bairoch, Amos ;
Barrell, Daniel ;
Binns, David ;
Blatter, Marie-Claude ;
Bougueleret, Lydie ;
Boutet, Emmanuel ;
Breuza, Lionel ;
Bridge, Alan ;
Browne, Paul ;
Chan, Wei Mun ;
Coudert, Elizabeth ;
Daugherty, Louise ;
Dimmer, Emily ;
Eberhardt, Ruth ;
Estreicher, Anne ;
Famiglietti, Livia ;
Ferro-Rojas, Serenella ;
Feuermann, Marc ;
Foulger, Rebecca ;
Gruaz-Gumowski, Nadine .
NUCLEIC ACIDS RESEARCH, 2010, 38 :D331-D335
[5]  
BLAUT M, 1984, EUR J BIOCHEM, V141, P217, DOI 10.1111/j.1432-1033.1984.tb08178.x
[6]   Hydrogen-dependent oxygen reduction by homoacetogenic bacteria isolated from termite guts [J].
Boga, HI ;
Brune, A .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2003, 69 (02) :779-786
[7]   Comparative genomics highlights the unique biology of Methanomassiliicoccales, a Thermoplasmatales-related seventh order of methanogenic archaea that encodes pyrrolysine [J].
Borrel, Guillaume ;
Parisot, Nicolas ;
Harris, Hugh M. B. ;
Peyretaillade, Eric ;
Gaci, Nadia ;
Tottey, William ;
Bardot, Olivier ;
Raymann, Kasie ;
Gribaldo, Simonetta ;
Peyret, Pierre ;
O'Toole, Paul W. ;
Brugere, Jean-Francois .
BMC GENOMICS, 2014, 15
[8]   Genome Sequence of "Candidatus Methanomassiliicoccus intestinalis" Issoire-Mx1, a Third Thermoplasmatales-Related Methanogenic Archaeon from Human Feces [J].
Borrel, Guillaume ;
Harris, Hugh M. B. ;
Parisot, Nicolas ;
Gaci, Nadia ;
Tottey, William ;
Mihajlovski, Agnes ;
Deane, Jennifer ;
Gribaldo, Simonetta ;
Bardot, Olivier ;
Peyretaillade, Eric ;
Peyret, Pierre ;
O'Toole, Paul W. ;
Brugere, Jean-Francois .
GENOME ANNOUNCEMENTS, 2013, 1 (04)
[9]   Unique Characteristics of the Pyrrolysine System in the 7th Order of Methanogens: Implications for the Evolution of a Genetic Code Expansion Cassette [J].
Borrel, Guillaume ;
Gaci, Nadia ;
Peyret, Pierre ;
O'Toole, Paul W. ;
Gribaldo, Simonetta ;
Brugere, Jean-Francois .
ARCHAEA-AN INTERNATIONAL MICROBIOLOGICAL JOURNAL, 2014, 2014
[10]   Phylogenomic Data Support a Seventh Order of Methylotrophic Methanogens and Provide Insights into the Evolution of Methanogenesis [J].
Borrel, Guillaume ;
O'Toole, Paul W. ;
Harris, Hugh M. B. ;
Peyret, Pierre ;
Brugere, Jean-Francois ;
Gribaldo, Simonetta .
GENOME BIOLOGY AND EVOLUTION, 2013, 5 (10) :1769-1780