KEGG   Corynebacterium genitalium: KBP53_01225
Entry
KBP53_01225       CDS       T10365                                 
Name
(GenBank) ATP-binding protein
  KO
K07768  two-component system, OmpR family, sensor histidine kinase SenX3 [EC:2.7.13.3]
Organism
cgp  Corynebacterium genitalium
Pathway
cgp02020  Two-component system
Brite
KEGG Orthology (KO) [BR:cgp00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   02020 Two-component system
    KBP53_01225
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01001 Protein kinases [BR:cgp01001]
    KBP53_01225
  09183 Protein families: signaling and cellular processes
   02022 Two-component system [BR:cgp02022]
    KBP53_01225
Enzymes [BR:cgp01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.13  Protein-histidine kinases
    2.7.13.3  histidine kinase
     KBP53_01225
Protein kinases [BR:cgp01001]
 Histidine kinases
  OmpR family
   KBP53_01225
Two-component system [BR:cgp02022]
 OmpR family
  SenX3-RegX3 (phosphate starvation response)
   KBP53_01225
SSDB
Motif
Pfam: HATPase_c HisKA HATPase_c_5 HATPase_c_3 DUF3802 DUF945
Other DBs
NCBI-ProteinID: UUA89637
LinkDB
Position
255918..257120
AA seq 400 aa
MNYVLAFLAGGIVVALAIGGTTWLRRWRGRTRTSDNPADNQVRTVSQILHLVIQGSPTGV
TVVGRKGDVILSNGRAHEMSIVHDRTLNPEVWGVGKQVFEDAETRVLELNLKHRSTGSRV
NNVRAVVQPLTLSENSYIIVYSVDESENVRMESARRDFVANVSHELKTPVGGMSLLAEAL
LEDPNDPEMVTYFGEKLVGEAQRMGAMITDLINLSKLQGAEALPEMAAVTVDEIIDEAME
RNLLTAENQEIELNRGERTDTMIMADKSLLVTALSNLITNAINYSPKGQPVSVSQKVVRD
SVVLIRVTDRGIGIAPEDQKRVFERFFRVDKARSRQTGGTGLGLAIVKHVVANHGGNIKL
WSRLGTGSTFTIELPVHKPDPSSATVVPTEIAELDNKEQQ
NT seq 1203 nt   +upstreamnt  +downstreamnt
gtgaattacgttctcgccttccttgcgggaggcattgtcgtcgccctcgcgatcggcgga
accacgtggctccgccgctggcgggggcgtacccgtaccagcgacaaccccgcagacaac
caagtccgcacagtcagccagatcctgcacttggtcatccaggggtcgccgaccggtgtc
actgtcgtgggcagaaaaggcgacgtcatcctgtccaacggccgcgcccacgagatgtcg
attgtgcatgacaggacgctgaacccggaggtgtggggcgtcggcaagcaagtgtttgag
gacgcagagacccgcgtcttggaattgaacctcaagcaccgctcgaccggctcccgcgtg
aacaacgtgcgcgcggtggtgcagccgctgactttgtcggagaacagctacatcatcgtg
tactcggtggacgagtctgaaaatgtgcgcatggaatccgcccgccgcgacttcgtggcg
aacgtctcgcatgagctgaaaacccccgtcggcggcatgtcgttgctggccgaggctctg
ctggaggacccgaacgacccggagatggtcacctacttcggtgagaaactggtcggggaa
gctcaacgcatgggcgcaatgatcaccgacctgatcaatctgtccaagctgcagggtgct
gaagcgctcccggaaatggccgccgtgaccgtcgacgagatcatcgacgaagcgatggaa
cgcaaccttctcactgccgaaaaccaagagatcgagctcaaccgcggcgaacgcaccgac
acaatgatcatggcagacaagtctctgttggtcacggctctgtcgaacctgatcacaaac
gcgatcaattactcgccgaaaggtcagccagtcagcgttagccaaaaagtcgtccgcgat
tcggtggtgctcatccgcgtcactgaccgcggcattggtatcgcgccggaagaccagaag
cgtgtgttcgagcgtttcttccgcgtggacaaggcgcggtcgagacagacgggcgggacg
gggctcggtttggccatcgtcaagcacgtcgtggcaaaccatggcggtaatatcaagctg
tggtcgcgtttgggaacgggatcaacgttcacgatcgagttgccggtgcacaaaccggac
ccgtcgagtgcaacggtcgttcccacagagatcgccgagttggacaataaggagcagcaa
tga

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