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MULTISPECIES: DNA-3-methyladenine glycosylase 2 [Salmonella].


LOCUS       WP_000494714             289 aa            linear   BCT 20-JUN-2019
ACCESSION   WP_000494714
VERSION     WP_000494714.1
KEYWORDS    RefSeq.
SOURCE      Salmonella
  ORGANISM  Salmonella
            Bacteria; Pseudomonadati; Pseudomonadota; Gammaproteobacteria;
            Enterobacterales; Enterobacteriaceae.
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  :: HMM
            Evidence Accession :: NF007641.0
            Evidence Source    :: NCBI Protein Cluster (PRK)
            Source Identifier  :: PRK10308
            ##Evidence-For-Name-Assignment-END##
            COMPLETENESS: full length.
FEATURES             Location/Qualifiers
     source          1..289
                     /organism="Salmonella"
                     /db_xref="taxon:590"
     gene            1..289
                     /gene="alkA"
     Protein         1..289
                     /product="DNA-3-methyladenine glycosylase 2"
                     /EC_number="3.2.2.21"
                     /GO_function="GO:0003824 - catalytic activity [Evidence
                     IEA]"
                     /GO_process="GO:0006281 - DNA repair [Evidence IEA]"
                     /calculated_mol_wt=31576
     Region          1..283
                     /region_name="PRK10308"
                     /note="3-methyl-adenine DNA glycosylase II; Provisional"
                     /db_xref="CDD:236671"
ORIGIN      
        1 mftlswqppy dwswmlgfla aravdgvetv gegfyarslv vgehrglvsv rphlpthtvq
       61 vsvsagllpv apaclakvsr lfdldcqpaq vaavlgplge drpglrlpgs vdtfeqgvra
      121 ilgqlvsvam aarltakvar rygealpdap dyvcfpgpet laladplalk algmplrrae
      181 alihlaqatl agklalaapp dieqsvknlq tfpgigrwta nyfalrgwqa kdiflpddyl
      241 ikqrfagmtp aqirryaerw kpwrsyallh iwythgwqps mdseiagiq