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Complete Genome Sequence of Finegoldia magna, an Anaerobic Opportunistic Pathogen

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Complete Genome Sequence of Finegoldia magna, an Anaerobic Opportunistic Pathogen

Abstract

Abstract Finegoldia magna (formerly Peptostreptococcus magnus ), a member of the Gram-positive anaerobic cocci (GPAC), is a commensal bacterium colonizing human skin and mucous membranes. Moreover, it is also recognized as an opportunistic pathogen responsible for various infectious diseases. Here, we report the complete genome sequence of F. magna ATCC 29328. The genome consists of a 1 797 577 bp circular chromosome and an 189 163 bp plasmid (pPEP1). The metabolic maps constructed based on the genome information confirmed that most F. magna strains cannot ferment most sugars, except fructose, and have various aminopeptidase activities. Three homologs of albumin-binding protein, a known virulence factor useful for antiphagocytosis, are encoded on the chromosome, and one albumin-binding protein homolog is encoded on the plasmid. A unique feature of the genome is that F. magna encodes many sortase genes, of which substrates may be involved in bacterial pathogenesis, such as antiphagocytosis and adherence to the host cell. The plasmid pPEP1 encodes seven sortase and seven substrate genes, whereas the chromosome encodes four sortase and 19 substrate genes. These plasmid-encoded sortases may play important roles in the pathogenesis of F. magna by enriching the variety of cell wall anchored surface proteins. Key words
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/lp/oxford-university-press/complete-genome-sequence-of-finegoldia-magna-an-anaerobic-IAX5vdD28S
Title
Complete Genome Sequence of Finegoldia magna, an Anaerobic Opportunistic Pathogen
Author(s)
Goto, Takatsugu; Yamashita, Atsushi; Hirakawa, Hideki; Matsutani, Minenosuke; Todo, Kozo; Ohshima, Kenshiro; Toh, Hidehiro; Miyamoto, Kazuaki; Kuhara, Satoru; Hattori, Masahira; Shimizu, Tohru; Akimoto, Shigeru
Journal
DNA Research , Volume 15 (1): 39 Oxford University Press – Feb 1, 2008
Publisher
Oxford University Press
Copyright
Copyright © 2010 Kazusa DNA Research Institute
ISSN
1340-2838
eISSN
1756-1663
D.O.I.
10.1093/dnares/dsm030
Publisher site
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