GenomeNet

Database: RefSeq
Entry: WP_093856409
LinkDB: WP_093856409
Original site: WP_093856409 
LOCUS       WP_093856409             161 aa            linear   BCT 09-JAN-2025
DEFINITION  GbsR/MarR family transcriptional regulator [Tenuibacillus
            multivorans].
ACCESSION   WP_093856409
VERSION     WP_093856409.1
KEYWORDS    RefSeq.
SOURCE      Tenuibacillus multivorans
  ORGANISM  Tenuibacillus multivorans
            Bacteria; Bacillati; Bacillota; Bacilli; Bacillales; Bacillaceae;
            Tenuibacillus.
REFERENCE   1  (residues 1 to 161)
  AUTHORS   Nazaret,F., Alloing,G., Mandon,K. and Frendo,P.
  TITLE     MarR Family Transcriptional Regulators and Their Roles in
            Plant-Interacting Bacteria
  JOURNAL   Microorganisms 11 (8), 1936 (2023)
   PUBMED   37630496
  REMARK    Publication Status: Online-Only
REFERENCE   2  (residues 1 to 161)
  AUTHORS   Will,W.R. and Fang,F.C.
  TITLE     The evolution of MarR family transcription factors as
            counter-silencers in regulatory networks
  JOURNAL   Curr Opin Microbiol 55, 1-8 (2020)
   PUBMED   32044654
REFERENCE   3  (residues 1 to 161)
  AUTHORS   Deochand,D.K. and Grove,A.
  TITLE     MarR family transcription factors: dynamic variations on a common
            scaffold
  JOURNAL   Crit Rev Biochem Mol Biol 52 (6), 595-613 (2017)
   PUBMED   28670937
REFERENCE   4  (residues 1 to 161)
  AUTHORS   Grove,A.
  TITLE     Regulation of Metabolic Pathways by MarR Family Transcription
            Factors
  JOURNAL   Comput Struct Biotechnol J 15, 366-371 (2017)
   PUBMED   28694934
  REMARK    Publication Status: Online-Only
REFERENCE   5  (residues 1 to 161)
  AUTHORS   Grove,A.
  TITLE     MarR family transcription factors
  JOURNAL   Curr Biol 23 (4), R142-R143 (2013)
   PUBMED   23428319
REFERENCE   6  (residues 1 to 161)
  AUTHORS   Aravind,L., Anantharaman,V., Balaji,S., Babu,M.M. and Iyer,L.M.
  TITLE     The many faces of the helix-turn-helix domain: transcription
            regulation and beyond
  JOURNAL   FEMS Microbiol Rev 29 (2), 231-262 (2005)
   PUBMED   15808743
REFERENCE   7  (residues 1 to 161)
  AUTHORS   Rosinski,J.A. and Atchley,W.R.
  TITLE     Molecular evolution of helix-turn-helix proteins
  JOURNAL   J Mol Evol 49 (3), 301-309 (1999)
   PUBMED   10473770
REFERENCE   8  (residues 1 to 161)
  AUTHORS   Wintjens,R. and Rooman,M.
  TITLE     Structural classification of HTH DNA-binding domains and
            protein-DNA interaction modes
  JOURNAL   J Mol Biol 262 (2), 294-313 (1996)
   PUBMED   8831795
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  :: Conserved Domain (CDD)
            Evidence Accession :: Domain architecture ID 10003936
            Evidence Source    :: NCBI SPARCLE
            ##Evidence-For-Name-Assignment-END##
            COMPLETENESS: full length.
FEATURES             Location/Qualifiers
     source          1..161
                     /organism="Tenuibacillus multivorans"
                     /db_xref="taxon:237069"
     Protein         1..161
                     /product="GbsR/MarR family transcriptional regulator"
                     /GO_function="GO:0003677 - DNA binding [Evidence IEA]"
                     /GO_function="GO:0003700 - DNA-binding transcription
                     factor activity [Evidence IEA]"
                     /GO_process="GO:0006355 - regulation of DNA-templated
                     transcription [Evidence IEA]"
                     /calculated_mol_wt=19035
     Region          7..161
                     /region_name="GbsR"
                     /note="DNA-binding transcriptional regulator GbsR, MarR
                     family [Transcription]; COG1510"
                     /db_xref="CDD:441119"
ORIGIN      
        1 mnileqdrie ninnlmisef sktlemfaln kteaqlfvtl flndepmtld dmkdvlgksk
       61 tsmsnsvrtl ldynlvervf kkgarkdlyq akkdlyqkfm ktyvkrwlea idrqihslks
      121 iedelktmds khenighkik eaikfhqsle evfhqinryd q
//
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