LOCUS       WQZ29367.1               791 aa    PRT              BCT 29-DEC-2023
DEFINITION  Helicobacter pylori TonB-dependent receptor protein.
ACCESSION   CP079244-838
PROTEIN_ID  WQZ29367.1
SOURCE      Helicobacter pylori
  ORGANISM  Helicobacter pylori
            Bacteria; Campylobacterota; Epsilonproteobacteria;
            Campylobacterales; Helicobacteraceae; Helicobacter.
REFERENCE   1  (bases 1 to 1570870)
  AUTHORS   Thorell,K., Munoz-Ramirez,Z.Y., Wang,D., Sandoval-Motta,S., Boscolo
            Agostini,R., Ghirotto,S., Torres,R.C., Falush,D., Camargo,M.C. and
            Rabkin,C.S.
  CONSRTM   HpGP Research Network
  TITLE     The Helicobacter pylori Genome Project: insights into H. pylori
            population structure from analysis of a worldwide collection of
            complete genomes
  JOURNAL   Nat Commun 14 (1), 8184 (2023)
   PUBMED   38081806
  REMARK    Publication Status: Online-Only
REFERENCE   2  (bases 1 to 1570870)
  AUTHORS   Camargo,M.C. and Rabkin,C.S.
  TITLE     Direct Submission
  JOURNAL   Submitted (15-JUL-2021) IIB, National Cancer Institute, 9609
            Medical Center Dr., Rm. 6E110, Bethesda, MD 20892, USA
COMMENT     The annotation was added by the NCBI Prokaryotic Genome Annotation
            Pipeline (PGAP). Information about PGAP can be found here:
            https://www.ncbi.nlm.nih.gov/genome/annotation_prok/
            
            ##Genome-Assembly-Data-START##
            Assembly Method        :: HGAP v. 4
            Assembly Name          :: HpGP-TWN-021
            Genome Representation  :: Full
            Expected Final Version :: Yes
            Genome Coverage        :: 2661x
            Sequencing Technology  :: PacBio Sequel II
            ##Genome-Assembly-Data-END##
            
            ##Genome-Annotation-Data-START##
            Annotation Provider               :: NCBI
            Annotation Date                   :: 07/16/2021 08:12:09
            Annotation Pipeline               :: NCBI Prokaryotic Genome
                                                 Annotation Pipeline (PGAP)
            Annotation Method                 :: Best-placed reference protein
                                                 set; GeneMarkS-2+
            Annotation Software revision      :: 5.2
            Features Annotated                :: Gene; CDS; rRNA; tRNA; ncRNA;
                                                 repeat_region
            Genes (total)                     :: 1,497
            CDSs (total)                      :: 1,452
            Genes (coding)                    :: 1,391
            CDSs (with protein)               :: 1,391
            Genes (RNA)                       :: 45
            rRNAs                             :: 2, 2, 2 (5S, 16S, 23S)
            complete rRNAs                    :: 2, 2, 2 (5S, 16S, 23S)
            tRNAs                             :: 36
            ncRNAs                            :: 3
            Pseudo Genes (total)              :: 61
            CDSs (without protein)            :: 61
            Pseudo Genes (ambiguous residues) :: 0 of 61
            Pseudo Genes (frameshifted)       :: 44 of 61
            Pseudo Genes (incomplete)         :: 11 of 61
            Pseudo Genes (internal stop)      :: 18 of 61
            Pseudo Genes (multiple problems)  :: 12 of 61
            ##Genome-Annotation-Data-END##
FEATURES             Qualifiers
     source          /organism="Helicobacter pylori"
                     /mol_type="genomic DNA"
                     /strain="HpGP-TWN-021"
                     /isolation_source="Biopsy"
                     /host="Homo sapiens"
                     /db_xref="taxon:210"
                     /geo_loc_name="Taiwan"
                     /lat_lon="23.30 N 121.00 E"
                     /collected_by="Maria Camargo and Charles Rabkins"
     protein         /locus_tag="E5P95_04275"
                     /inference="COORDINATES: similar to AA
                     sequence:RefSeq:WP_000479896.1"
                     /note="Derived by automated computational analysis using
                     gene prediction method: Protein Homology."
                     /transl_table=11
BEGIN
        1 MFLRSYPKLR YALCLPLLAD TCYSADHTLG KVTTQAKRIF TYNNEFKVTS KELDQRQSNE
       61 VKDLFRTNPD VNVGGGSVMG QKIYVRGIED RLLRVTVDGA AQNGNIYHHQ GNTVIDPGML
      121 KSVEVTKGAA NASAGPGAIA GVIKMETKGA ADFIPRGKNY AASGAVSFYT NFGDRETFRS
      181 AYQSAHFDII AYYTHQNIFY YRSGATATKN LFKPTQADKE PGTPSEQNNA LVKMNGYLSD
      241 RDTLTFSWNM TRDNATRPLR SNAIGLAYPC EAPFSPDSDQ GCPNVLDSFT RYMYHSVNSA
      301 NNLSLQYKRE AGNSFGDPRL DFTLYTSIRN AKFDPLFDPN SVYAKFPTSQ ATTWEKENYP
      361 CVEGGYCTPS FSDVDKPSSQ PRDLFLNNTG LNLKVVHVID EATDSLFEYG FNYQNLSVFD
      421 ARIPKSELYR PNQVYTDDKG QKQIACSLVD NNPNDPTLCQ RGKANGNIYG GYVQANYSPH
      481 KIITFGAGVR WDAYTLYDKD WNHRYTQGFS PSAALVISPI EPLSLKITYS QVTRGVMPGD
      541 GVYMRQNDLR YAKNIKPEVG SNAEFNIDYS GQYFSGRAAA FYQALDNFIS QYAQNLIVTN
      601 LSQAIRIYGY EVGGTFKYKG VSLNVGISRT WPTTRGYLMA DSYELAASTG NVFIIKLDYT
      661 IPKTGINLAW LSRFVTGLDY CGFDIYLPDY GTAEKPKTPT DLAKCGSQLG LVHMHKPGYG
      721 VSNFYINWSP KTKSHWKGLL LSAVFNNVFN KFYVDQTSPY VMSPDMPGTD AVKRAIAEPG
      781 FNARFEVAYK W
//