LOCUS       CBA27639.1               380 aa    PRT              BCT 16-AUG-2011
DEFINITION  Curvibacter putative symbiont of Hydra magnipapillata
            putative serine protease do-like protein.
ACCESSION   FN543104-328
PROTEIN_ID  CBA27639.1
SOURCE      Curvibacter putative symbiont of Hydra magnipapillata
  ORGANISM  Curvibacter putative symbiont of Hydra magnipapillata
            Bacteria; Proteobacteria; Betaproteobacteria; Burkholderiales;
            Comamonadaceae; Curvibacter.
REFERENCE   1  (bases 1 to 1568541)
  AUTHORS   Rattei T.
  JOURNAL   Submitted (16-AUG-2009) to the INSDC. Rattei T., Genome Oriented
            Bioinformatics, Technische Universitaet Muenchen, Am Forum 1,
            Bavaria, 85354 Freising, GERMANY.
REFERENCE   2
  AUTHORS   Chapman J.A., Kirkness E.F., Simakov O., Hampson S.E., Mitros T.,
            Weinmaier T., Rattei T., Balasubramanian P.G., Borman J., Busam D.,
            Disbennett K., Pfannkoch C., Sumin N., Sutton G., Viswanathan L.,
            Walenz B., Goodstein D.M., Hellsten U., Kawashima T.,
            Prochnik S.E., Putnam N.H., Shu S., Blumberg B., Dana C.E., Gee L.,
            Kibler D.F., Law L., Lindgens D., Martinez D.E., Peng J.,
            Wigge P.A., Bertulat B., Guder C., Nakamura Y., Ozbek S.,
            Watanabe H., Khalturin K., Hemmrich G., Franke A., Augustin R.,
            Fraune S., Hayakawa E., Hayakawa S., Hirose M., Hwang J., Ikeo K.,
            Nishimiya-Fujisawa C., Ogura A., Takahashi T., Steinmetz P.R.,
            Zhang X., Aufschnaiter R., Eder M.K., Gorny A.K., Salvenmoser W.,
            Heimberg A.M., Wheeler B.M., Peterson K.J., Boettger A.,
            Tischler P., Wolf A., Gojobori T., Remington K.A., Strausberg R.L.,
            Venter J., Technau U., Hobmayer B., Bosch T.C., Holstein T.W.,
            Fujisawa T., Bode H.R., David C.N., Rokhsar D.S., Steele R.E.
  TITLE     The dynamic genome of Hydra
  JOURNAL   Nature 464(7288), 592-596(2010).
   PUBMED   20228792
COMMENT     The assembly of the Hydra magnipapillata yielded eight large
            putatively
            bacterial scaffolds as evidenced by:
            (1) high G+C content (in contrast to the low G+C content of the
            Hydra
            genome)
            (2) no high-copy repeat sequences typical of Hydra scaffolds
            (3) closely spaced single-exon ORFs with best hits to bacterial
            genes.
            These scaffolds spanned a total of 4 Mbp and represent an estimated
            98% of
            the bacterial chromosome. Phylogenetic analysis of 16S rRNA and
            conserved
            clusters of orthologous groups of proteins (COGs) indicate that
            this
            bacterium is a novel Curvibacter species belonging to the family
            Comamonadaceae (order Burkholderiales).
FEATURES             Qualifiers
     source          /organism="Curvibacter putative symbiont of Hydra
                     magnipapillata"
                     /mol_type="genomic DNA"
                     /clone="HmaUn_WGA69518_1"
                     /db_xref="taxon:667019"
     protein         /transl_table=11
                     /gene="degP"
                     /locus_tag="Csp_A03280"
                     /EC_number="3.4.21.107"
                     /db_xref="GOA:C9Y877"
                     /db_xref="InterPro:IPR001478"
                     /db_xref="InterPro:IPR001940"
                     /db_xref="InterPro:IPR009003"
                     /db_xref="InterPro:IPR036034"
                     /db_xref="UniProtKB/TrEMBL:C9Y877"
                     /inference="similar to AA
                     sequence:UniProtKB/Swiss-Prot:Q9Z6T0"
BEGIN
        1 MKRLWLLFSQ TCTVLLAAYF VVATLKPQWI GHGSGARGAI SLFETPAPAA GEIPPGSLRA
       61 AAQKASSAVV SINTSKAAVK NPNANDPWFR FFYGDQGDEP QGGLGSGVIV SPEGYILTNN
      121 HVIEEADEIQ VFFNDGRKAP AKVIGTDPDS DLAVLKVEMD KLPTIVLGNS DSLQVGDQVL
      181 AIGNPFGVGQ TVTSGIVSAL GRNQLGINTF ENFIQTDAAI NPGNSGGALV DTNGNLLGIN
      241 TAIYSRSGGS MGIGFAIPVA TAKQVLEDIV KDGKVTRGWI GVEPNDLSAE LAETFDVKTK
      301 EGVIITGVLQ NGPAAQAGIR PGDVIVSIAG KPVPDVTQLL SLVSSLKPGT EASFVVQRKD
      361 ETLKLKLTPG VRPKPKAQKR
//