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MULTISPECIES: pseudopaline biosynthesis protein CntL [Pseudomonas].


LOCUS       WP_003112332             263 aa            linear   BCT 07-JAN-2021
ACCESSION   WP_003112332
VERSION     WP_003112332.1
KEYWORDS    RefSeq.
SOURCE      Pseudomonas
  ORGANISM  Pseudomonas
            Bacteria; Pseudomonadati; Pseudomonadota; Gammaproteobacteria;
            Pseudomonadales; Pseudomonadaceae.
REFERENCE   1  (residues 1 to 263)
  AUTHORS   Lhospice,S., Gomez,N.O., Ouerdane,L., Brutesco,C., Ghssein,G.,
            Hajjar,C., Liratni,A., Wang,S., Richaud,P., Bleves,S., Ball,G.,
            Borezee-Durant,E., Lobinski,R., Pignol,D., Arnoux,P. and
            Voulhoux,R.
  TITLE     Pseudomonas aeruginosa zinc uptake in chelating environment is
            primarily mediated by the metallophore pseudopaline
  JOURNAL   Sci Rep 7 (1), 17132 (2017)
   PUBMED   29214991
REFERENCE   2  (residues 1 to 263)
  AUTHORS   McFarlane,J.S. and Lamb,A.L.
  TITLE     Biosynthesis of an Opine Metallophore by Pseudomonas aeruginosa
  JOURNAL   Biochemistry 56 (45), 5967-5971 (2017)
   PUBMED   29091735
COMMENT     REFSEQ: This record represents a single, non-redundant, protein
            sequence which may be annotated on many different RefSeq genomes
            from the same, or different, species.
            
            ##Evidence-For-Name-Assignment-START##
            Evidence Category  :: BlastRule
            Evidence Accession :: NBR005953
            Evidence Source    :: NCBI
            ##Evidence-For-Name-Assignment-END##
            COMPLETENESS: full length.
FEATURES             Location/Qualifiers
     source          1..263
                     /organism="Pseudomonas"
                     /db_xref="taxon:286"
     gene            1..263
                     /gene="cntL"
     Protein         1..263
                     /product="pseudopaline biosynthesis protein CntL"
                     /calculated_mol_wt=28755
     Region          <122..243
                     /region_name="AdoMet_MTases"
                     /note="S-adenosylmethionine-dependent methyltransferases
                     (SAM or AdoMet-MTase), class I; AdoMet-MTases are enzymes
                     that use S-adenosyl-L-methionine (SAM or AdoMet) as a
                     substrate for methyltransfer, creating the product
                     S-adenosyl-L-homocysteine (AdoHcy); cl17173"
                     /db_xref="CDD:473071"
ORIGIN      
        1 mqgrtpllet lreleceirl ltvyareccg cyeilrrkld rlsgligedc sraqwqadsd
       61 dpalqalglr lrdaavqalc elekhlcqgv lhepgemgry lgsllesirg eldsagidad
      121 arvlfvgsga lptsalvlar evgahlccld ideealgcar eiarcqglea rmqfsslppa
      181 elafsrdath fliaslvqqk savlaqirqv mradakvllr hgsgikglfn ypvepaeldg
      241 wrvcaervsq plydtlilek agr