KEGG   Pseudomonas soli: O165_014565
Entry
O165_014565       CDS       T03276                                 
Name
(GenBank) histidine kinase
  KO
K07646  two-component system, OmpR family, sensor histidine kinase KdpD [EC:2.7.13.3]
Organism
pmos  Pseudomonas soli
Pathway
pmos02020  Two-component system
Brite
KEGG Orthology (KO) [BR:pmos00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   02020 Two-component system
    O165_014565
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01001 Protein kinases [BR:pmos01001]
    O165_014565
  09183 Protein families: signaling and cellular processes
   02022 Two-component system [BR:pmos02022]
    O165_014565
Enzymes [BR:pmos01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.13  Protein-histidine kinases
    2.7.13.3  histidine kinase
     O165_014565
Protein kinases [BR:pmos01001]
 Histidine kinases
  OmpR family
   O165_014565
Two-component system [BR:pmos02022]
 OmpR family
  KdpD-KdpE (potassium transport)
   O165_014565
SSDB
Motif
Pfam: KdpD DUF4118 HATPase_c HisKA Usp GAF_3 HATPase_c_2 GAF_2 AAA_30 AAA_22 ETF
Other DBs
NCBI-ProteinID: AIN59438
UniProt: A0A1H9QW49
LinkDB
Position
complement(3058904..3061558)
AA seq 884 aa
MSNPTRADALLAGLPREGRGRLKVFLGAAPGVGKTFAMLQAAHAQQRQGLQVVAGVVETH
GRAETEALLGGLTQQPLLRREYRGVMLEEMDLDGLLKAAPALVLVDELAHTNAPGSRHAK
RWQDVQELLAAGIDVYTTVNVQHLESLNDKVRDITGVQVRETLPDWVLQEAFELVLIDLP
PRELLERLREGKVYVPEQARAAIEAYFSQTNLTALRELAMQTAAAQVDADLASGYRQRGQ
EAPALRGRLLVGIDGDEQAERLVRHACRVAQRRHLPWSVVHVDNGRLRDETARHRLQAAQ
QLAERLGGEVVLLRAGEVARTLIQHAAERRASLVLVGQSRDLLRRRLVGAGVAARLLRES
HGLEINVLDRDAQPPAARTAAKRVWVWRHYVLALVATLLAAGLAWAVSSVLALPNISLVF
LAAVLLVAVRSSLGPALACAALSFLTYDFLFIPPNFSFAIQREEDVLTLVFFLLMAALTG
NLAARQRRQLQALRETQAETRQLLDLSRRLTVATDRQAVFSAAGQHMDGWQGVQVCLLER
SADGLLQVASGGSPAFTDNERAAAEWAWQHGQAAGFGSDTLPHGRWWWWPLAVEEQPLAL
LGIRPRDGEPLSDPRRRLLMALAQPLAQALARARLGEQLEAARLHGETEQLRSALLASVS
HDLRTPLTSMRGSIDSLLALGDAIPPDDRRELLEGTRNEAERLDRYIQNLLDMTRLGHGT
LKLARDWVAPADIVGSALNRLRVVLAPLRVHTEVPPELPLLFVHAALIEQALINVLENAA
RFSPANGRLQLQVSVHDEQLCLAVADEGPGIPQDEREKIFDMFYTAARGDRGGQGTGLGL
AICQGMIGAHGGRILVDDGIDGHGTCITLCLPLPTQPVTESEAP
NT seq 2655 nt   +upstreamnt  +downstreamnt
atgagcaaccccactcgcgccgatgcgctgctggccggcctgccccgcgaaggtcgcggc
aggctcaaggtgttcctcggcgccgcgcccggggtcggcaagacctttgccatgctccag
gccgcccacgcccagcagcgccagggcttgcaagtggtggccggagtggtcgagacccac
ggccgcgccgagaccgaagccctgctcggcgggctgacccaacaacctctgctgcgccgc
gaatatcgcggcgtgatgctcgaggaaatggacctcgacggcttgctcaaggccgcgcct
gcgctggtgctggtcgatgagctggcgcacaccaacgcccccggcagccgccacgccaag
cgctggcaggacgtgcaggaactgctcgccgccggcatcgacgtatacaccacggtcaac
gtccagcacctggaaagcctcaacgacaaggtccgcgacatcaccggcgtgcaggtgcgc
gagacattgcccgactgggtgctgcaggaagccttcgaactggtactgattgacctgccg
ccgcgcgagctgctcgagcgcttgcgcgagggcaaggtctacgtgcccgaacaggcacgg
gcggccatcgaggcctatttctcccagaccaacctcactgccctgcgcgagctggccatg
cagaccgccgccgcccaggtggacgcggacctggccagcggctaccgccagcgcggccag
gaagccccggccctgcgcgggcggctgctggtgggcatcgatggcgacgagcaggccgaa
cgcctggtgcgccatgcctgccgcgtcgcccagcgtcgccatctgccatggagcgtggtc
catgtcgataacgggcgcttgcgcgacgaaacggcccgccatcgcttgcaggccgcccag
caactggccgagcgccttggcggcgaagtggtgctgttgcgcgccggcgaagtggcgcgc
acgctgatccagcacgccgccgagcgccgcgccagcctggtgctggtgggccagtcccgt
gacctgttgcgtcggcgcctggtcggcgccggcgtggcggcgcgcctgctgcgtgagagt
cacggcctggagatcaacgtacttgaccgcgatgcccagccgccagcggcgcgcacggca
gcaaagcgcgtatgggtatggcgccattatgtgctggcgctggttgccacgctgctggcc
gcaggcctggcctgggccgtgtcgagcgtgctggcgctgcccaacatttccctggtgttt
cttgccgccgtgctgctggtggcggtacgcagcagcctggggccggcgctggcgtgcgcg
gcgctgtcgttcctcacctacgacttcctgttcatcccgccgaacttctccttcgccatc
cagcgcgaagaggacgtgctgaccctggtgttcttcctgctgatggccgcgcttaccggc
aacctcgccgcgcgccagcgccgccagttgcaggcgctgcgcgagacccaggcagagacc
cgccagttgctcgacctgtcgcgccgcctgactgtggccaccgaccgccaggcggtgttc
agcgctgccggccagcatatggatggttggcagggcgtgcaggtgtgtctgctcgaacgc
agcgccgacggcctgttgcaagtggccagtggtggctcgccagccttcaccgacaatgaa
cgcgccgcggccgaatgggcctggcaacatggccaggccgcgggctttggcagtgacacc
ttgccccacggtcgttggtggtggtggccgctggccgtggaggaacagcccctggccctg
ctcggcattcgcccacgcgacggcgaaccactgagtgatccgcgccgtcggttgttgatg
gccctggcgcagcccctggcccaggccctggcccgtgcccgcctgggcgagcaactggaa
gccgcccgcctgcacggtgaaaccgagcaactgcgcagcgccttgctcgcctcggtctcc
catgacctgcgcacgccgctgacgtcgatgcgcggcagcatcgacagcctgctggcgctg
ggtgacgccatccccccggacgaccgccgcgagctgctggaaggtacccgcaacgaagcc
gagcgcctggatcgctacatccagaatctgctggacatgacccgcctgggccacggcacg
ctcaagctggcccgcgactgggtagccccggctgatatcgtcggcagcgccctcaaccgc
ttgcgcgtggtgctggcgcccctgcgcgtgcacaccgaagtcccgcccgagctgccgctg
ctgttcgtgcacgcggcgctgatcgagcaggcgctgatcaatgtgctggaaaacgctgca
cgcttttccccggccaacggtcggctgcaactgcaggtctcggtgcacgacgaacagctg
tgcctcgcagtcgccgacgagggccccggcatcccccaggacgagcgcgaaaagatcttc
gacatgttctacaccgccgcccgcggcgatcggggcgggcagggcaccggcctgggcctg
gcgatctgccagggcatgatcggtgcccatggcggccgcatcctggtcgatgacggcatc
gatggccacggcacctgcatcactctatgcttgccgctgccgacccaacccgttaccgaa
agtgaagccccatga

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