TY - JOUR
T1 - Insights into the evolution of Archaea and eukaryotic protein modifier systems revealed by the genome of a novel archaeal group
AU - Nunoura, Takuro
AU - Takaki, Yoshihiro
AU - Kakuta, Jungo
AU - Nishi, Shinro
AU - Sugahara, Junichi
AU - Kazama, Hiromi
AU - Chee, Gab Joo
AU - Hattori, Masahira
AU - Kanai, Akio
AU - Atomi, Haruyuki
AU - Takai, Ken
AU - Takami, Hideto
N1 - Funding Information:
Ministry of Education, Culture, Sports, Science & Technology of Japan (Grant-in-Aid No. 18681030 to T.N., in part); Ministry of Education, Culture, Sports, Science & Technology of Japan (Grant-in-Aid No. 20310124 to H.T., in part); Ministry of Education, Culture, Sports, Science & Technology of Japan (Grant-in-Aid No. 22370066 to A.K., in part); Scientific Research on Priority Areas ‘Comprehensive Genomics’ (Grant-in-Aid to M.H., in part); Research fund at the Institute for Fermentation, Osaka, Japan (Grant-in-Aid to A.K., in part); Research funds at the Yamagata Prefectural Government and Tsuruoka City in Japan (Grant-in-Aid to A.K., in part). Funding for open access charge: Japan Agency for Marine-Earth Science & Technology (JAMSTEC).
PY - 2011/4
Y1 - 2011/4
N2 - The domain Archaea has historically been divided into two phyla, the Crenarchaeota and Euryarchaeota. Although regarded as members of the Crenarchaeota based on small subunit rRNA phylogeny, environmental genomics and efforts for cultivation have recently revealed two novel phyla/divisions in the Archaea; the 'Thaumarchaeota' and 'Korarchaeota'. Here, we show the genome sequence of Candidatus 'Caldiarchaeum subterraneum' that represents an uncultivated crenarchaeotic group. A composite genome was reconstructed from a metagenomic library previously prepared from a microbial mat at a geothermal water stream of a sub-surface gold mine. The genome was found to be clearly distinct from those of the known phyla/divisions, Crenarchaeota (hyperthermophiles), Euryarchaeota, Thaumarchaeota and Korarchaeota. The unique traits suggest that this crenarchaeotic group can be considered as a novel archaeal phylum/division. Moreover, C. subterraneum harbors an ubiquitin-like protein modifier system consisting of Ub, E1, E2 and small Zn RING finger family protein with structural motifs specific to eukaryotic system proteins, a system clearly distinct from the prokaryote-type system recently identified in Haloferax and Mycobacterium. The presence of such a eukaryote-type system is unprecedented in prokaryotes, and indicates that a prototype of the eukaryotic protein modifier system is present in the Archaea.
AB - The domain Archaea has historically been divided into two phyla, the Crenarchaeota and Euryarchaeota. Although regarded as members of the Crenarchaeota based on small subunit rRNA phylogeny, environmental genomics and efforts for cultivation have recently revealed two novel phyla/divisions in the Archaea; the 'Thaumarchaeota' and 'Korarchaeota'. Here, we show the genome sequence of Candidatus 'Caldiarchaeum subterraneum' that represents an uncultivated crenarchaeotic group. A composite genome was reconstructed from a metagenomic library previously prepared from a microbial mat at a geothermal water stream of a sub-surface gold mine. The genome was found to be clearly distinct from those of the known phyla/divisions, Crenarchaeota (hyperthermophiles), Euryarchaeota, Thaumarchaeota and Korarchaeota. The unique traits suggest that this crenarchaeotic group can be considered as a novel archaeal phylum/division. Moreover, C. subterraneum harbors an ubiquitin-like protein modifier system consisting of Ub, E1, E2 and small Zn RING finger family protein with structural motifs specific to eukaryotic system proteins, a system clearly distinct from the prokaryote-type system recently identified in Haloferax and Mycobacterium. The presence of such a eukaryote-type system is unprecedented in prokaryotes, and indicates that a prototype of the eukaryotic protein modifier system is present in the Archaea.
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U2 - 10.1093/nar/gkq1228
DO - 10.1093/nar/gkq1228
M3 - Article
C2 - 21169198
AN - SCOPUS:79955598535
SN - 0305-1048
VL - 39
SP - 3204
EP - 3223
JO - Nucleic acids research
JF - Nucleic acids research
IS - 8
ER -