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MULTISPECIES: SIMPL domain-containing protein [Pseudomonas].


LOCUS       WP_003094423             236 aa            linear   BCT 02-MAR-2025
ACCESSION   WP_003094423
VERSION     WP_003094423.1
KEYWORDS    RefSeq.
SOURCE      Pseudomonas
  ORGANISM  Pseudomonas
            Bacteria; Pseudomonadati; Pseudomonadota; Gammaproteobacteria;
            Pseudomonadales; Pseudomonadaceae.
REFERENCE   1  (residues 1 to 236)
  AUTHORS   Vig,E., Green,M., Liu,Y., Yu,K.Y., Kwon,H.J., Tian,J., Goebl,M.G.
            and Harrington,M.A.
  TITLE     SIMPL is a tumor necrosis factor-specific regulator of nuclear
            factor-kappaB activity
  JOURNAL   J Biol Chem 276 (11), 7859-7866 (2001)
   PUBMED   11096118
REFERENCE   2  (residues 1 to 236)
  AUTHORS   Pfeuffer,T., Goebel,W., Laubinger,J., Bachmann,M. and Kuhn,M.
  TITLE     LaXp180, a mammalian ActA-binding protein, identified with the
            yeast two-hybrid system, co-localizes with intracellular Listeria
            monocytogenes
  JOURNAL   Cell Microbiol 2 (2), 101-114 (2000)
   PUBMED   11207567
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 :: NF016300.6
            Evidence Source    :: EMBL-EBI
            Source Identifier  :: PF04402.19
            ##Evidence-For-Name-Assignment-END##
            COMPLETENESS: full length.
FEATURES             Location/Qualifiers
     source          1..236
                     /organism="Pseudomonas"
                     /db_xref="taxon:286"
     Protein         1..236
                     /product="SIMPL domain-containing protein"
                     /note="The SIMPL domain is named for its presence in mouse
                     protein SIMPL (signalling molecule that associates with
                     mouse pelle-like kinase). Bacterial member BP26, from
                     Brucella, was shown to assemble into a channel-like
                     structure, while YggE from E. coli has been associated
                     with resistance to oxidative stress.; The SIMPL domain is
                     named for its presence in mouse protein SIMPL (signalling
                     molecule that associates with mouse pelle-like kinase).
                     Bacterial member BP26, from Brucella, was shown to
                     assemble into a channel-like structure, while YggE from E.
                     coli has been associated with resistance to oxidative
                     stress.; The SIMPL domain is named for its presence in
                     mouse protein SIMPL (signalling molecule that associates
                     with mouse pelle-like kinase). Bacterial member BP26, from
                     Brucella, was shown to assemble into a channel-like
                     structure, while YggE from E. coli has been associated
                     with resistance to oxidative stress.; The SIMPL domain is
                     named for its presence in mouse protein SIMPL (signalling
                     molecule that associates with mouse pelle-like kinase).
                     Bacterial member BP26, from Brucella, was shown to
                     assemble into a channel-like structure, while YggE from E.
                     coli has been associated with resistance to oxidative
                     stress."
                     /calculated_mol_wt=24748
     Region          1..234
                     /region_name="COG3471"
                     /note="Predicted secreted (periplasmic) protein [Function
                     unknown]"
                     /db_xref="CDD:442694"
ORIGIN      
        1 msaisrlaaa vtlcaaslsa vaeeaprynq vslhaevsqq vahdlmqvtl ysenqgsdpa
       61 klaaettsvl naavadarkv kgvtislgsr nsypvyddkg qkitgwrera elrlessdfa
      121 algqlsadll gklkmggmdf siadatrkkn edqlmkgavd afkeraqllt ealggkgykl
      181 vslsvnsaga prpypvmrma amkadasfgg aqapeieagt sqvtvnadgv ievqmp