KEGG   Vibrio metoecus: QYQ96_03775
Entry
QYQ96_03775       CDS       T09673                                 
Name
(GenBank) ATP-binding protein
  KO
K10942  two-component system, sensor histidine kinase FlrB [EC:2.7.13.3]
Organism
vmt  Vibrio metoecus
Pathway
vmt02020  Two-component system
vmt05111  Biofilm formation - Vibrio cholerae
Brite
KEGG Orthology (KO) [BR:vmt00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   02020 Two-component system
    QYQ96_03775
 09140 Cellular Processes
  09145 Cellular community - prokaryotes
   05111 Biofilm formation - Vibrio cholerae
    QYQ96_03775
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01001 Protein kinases [BR:vmt01001]
    QYQ96_03775
  09183 Protein families: signaling and cellular processes
   02022 Two-component system [BR:vmt02022]
    QYQ96_03775
   02035 Bacterial motility proteins [BR:vmt02035]
    QYQ96_03775
Enzymes [BR:vmt01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.13  Protein-histidine kinases
    2.7.13.3  histidine kinase
     QYQ96_03775
Protein kinases [BR:vmt01001]
 Histidine kinases
  Other
   QYQ96_03775
Two-component system [BR:vmt02022]
 Other families
  FlrB-FlrC (polar flagellar synthesis)
   QYQ96_03775
Bacterial motility proteins [BR:vmt02035]
 Flagellar system
  Flagellar assembly proteins
   Others
    QYQ96_03775
SSDB
Motif
Pfam: HATPase_c HisKA PAS_8 HATPase_c_2 PAS PAS_4 HATPase_c_3 Diguanyl_cycl_sensor HATPase_c_5
Other DBs
NCBI-ProteinID: WKY93800
LinkDB
Position
1:789668..790723
AA seq 351 aa
MMSSAVQEQHSHLDSLEDQVERYKQVLDVMPAGVILLDTQGIVREANPEAQRLLDVPLVG
ERWYSVIQIAFAPREDDGHEISLRNGRKVRLAISASTTGQLILITDLTETRLLQSRVSDL
QRLSSLGRMVASLAHQVRTPLSSAMLYAANLAAPNLPPATRERFQSKLVDRLHDLEKQVN
DMLLFAKGGDNKVVAPFSIGDLACEFMPMVETALKNSQIDYGQEVESEETMLLGNANALA
SALSNLVMNAVQIAGKGSQIDVFFRPVNGELKISVQDNGPGVPESLQHKIMEPFFTTRSQ
GTGLGLAVVQMVCRAHGGRLELISKEGEGACFTMCIPLERQVDSSNSETGE
NT seq 1056 nt   +upstreamnt  +downstreamnt
atgatgagcagcgcagtgcaagagcagcattcccatttggactcgttagaagatcaagtt
gagcgctataaacaagtattggatgtgatgcccgcaggggtcattttgcttgatactcaa
ggcatcgtgcgtgaagccaaccctgaagcgcagcgcttgttggatgtccccttggtggga
gaaagatggtatagcgtgatccaaattgcgtttgcacctagagaagatgatgggcatgaa
atctcactgcgtaatggccgtaaagtccgtttggcgatttcggcttcaaccacagggcag
cttatccttatcactgatttaacggaaacacggttattgcagtcacgggtcagtgattta
caacggctttcttcactcggtcgtatggtcgcctctcttgcacaccaagtgcgcacgcca
ctttccagtgccatgttgtatgccgccaatcttgctgcgccaaatcttccgccggcaacg
cgcgagcgttttcaaagcaagcttgtcgatcggctacatgatcttgaaaagcaagttaac
gacatgctgctgtttgccaaagggggcgataataaagtggtcgcacctttttcaattggt
gatctggcttgcgaatttatgccgatggtggaaacggcgctaaaaaatagccagatcgat
tatggtcaagaagtcgaaagtgaagagaccatgcttttggggaacgccaacgcattagcc
tctgctctcagtaacttagtgatgaatgcagtgcaaattgctggcaaaggctcacaaatt
gatgtgtttttccgccccgtgaatggtgaactcaaaatttcagtgcaagataacggccct
ggagtgcctgaatctttgcagcacaaaattatggaacccttttttaccactcgctcccaa
ggcactggccttggcttagcggtagtgcaaatggtgtgtcgcgcccatggtgggcgatta
gaactgatatccaaggagggggaaggtgcttgttttaccatgtgcattccccttgaacgt
caggtagatagctcaaactcagagactggagagtga

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