Vibrio parahaemolyticus O1 Kuk FDA_R31: M634_13655
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Entry
M634_13655 CDS
T02761
Name
(GenBank) Fis family transcriptional regulator
KO
K10943
two-component system, response regulator FlrC
Organism
vpf
Vibrio parahaemolyticus O1:Kuk FDA_R31
Pathway
vpf02020
Two-component system
vpf02040
Flagellar assembly
vpf05111
Biofilm formation - Vibrio cholerae
Brite
KEGG Orthology (KO) [BR:
vpf00001
]
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
M634_13655
09140 Cellular Processes
09145 Cellular community - prokaryotes
05111 Biofilm formation - Vibrio cholerae
M634_13655
09142 Cell motility
02040 Flagellar assembly
M634_13655
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02022 Two-component system [BR:
vpf02022
]
M634_13655
02035 Bacterial motility proteins [BR:
vpf02035
]
M634_13655
Two-component system [BR:
vpf02022
]
Other families
FlrB-FlrC (polar flagellar synthesis)
M634_13655
Bacterial motility proteins [BR:
vpf02035
]
Flagellar system
Flagellar assembly proteins
Others
M634_13655
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
Sigma54_activat
Response_reg
Sigma54_activ_2
HTH_8
AAA_5
HTH_30
AAA_2
AAA_16
Mg_chelatase
MCM
HTH_20
DUF2089
FleQ
MerR
AAA_19
HTH_24
HTH_11
AAA_7
AAA_3
AAA
HTH_28
HTH_Crp_2
HTH_5
MFD_D3
Sigma70_r4_2
HTH_10
OKR_DC_1_N
Motif
Other DBs
NCBI-ProteinID:
AGQ91444
LinkDB
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Position
I:complement(2827358..2828767)
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AA seq
469 aa
AA seq
DB search
MAQSKVLIVEDDEGLREALVDTLALAGYEWLEADSAEDALVKLKSNAVDIVVSDVQMAGM
GGLALLRNIKQNWPNLPVLLMTAYANIEDAVSAMKDGAIDYMAKPFAPEVLLNMVSRYAP
IKSDDNGDAVVADEKSLRLLALADKVARTDANVMILGPSGSGKEVMSRYIHKASNRKDGP
FVAINCAAIPDNMLEATLFGYEKGAFTGAVQACPGKFEQAQGGTILLDEISEMDLNLQAK
LLRVLQEREVERLGSRKSIKLDVRVLATSNRDLKQYVSEGNFREDLYYRLNVFPIAWPAL
NERKGDIAPLAKHLAERHCSKMGMPVPQFSPVAVEKLLQYPWPGNVRELDNVVQRALILS
ENGDIGAEHILLEGVDWQDANSLQYVVQSAETLVPDVKPVAQAESVNRVNTGGEGLGGEL
RDQEYAIILETLVECSGRRKEMAEKLGISPRTLRYKLAKMRDAGIDIPS
NT seq
1410 nt
NT seq
+upstream
nt +downstream
nt
atggcgcaaagcaaagtgctgatcgtagaagacgacgaaggtcttcgtgaagccctcgtg
gatactctggctctggcagggtatgaatggttagaagccgatagtgcagaagacgcatta
gtaaagctgaaatcaaatgcggttgatatcgtggtatctgacgtgcaaatggcaggtatg
ggtggcttagcgctgctgcgtaacatcaaacaaaattggccgaacttaccagtgttgcta
atgacggcttacgccaatatcgaagatgccgtttctgcaatgaaagatggcgcgattgat
tacatggcgaaaccatttgcgccagaagtgctgcttaatatggtaagccgctatgctcct
atcaaaagtgatgacaacggtgatgctgtcgttgctgatgaaaagagtctgcgcttactt
gctttggctgataaagtggctcgcacggatgcgaacgtgatgatcttaggcccaagcggt
tcgggtaaagaagtgatgtcgcgttacattcacaaagcatcaaaccgtaaagacggccca
ttcgttgcgattaactgtgcggcgattcctgacaacatgctagaagcgacgctattcggt
tacgaaaaaggtgcattcactggtgctgttcaggcgtgtccgggtaagttcgagcaagcg
caaggcggcacaatcttacttgatgaaatcagcgagatggacttaaacctgcaagcgaag
ttattgcgtgttttgcaagagcgcgaagtagagcgtcttggtagccgtaagagcatcaag
ttagatgttcgtgtgttagcgaccagtaaccgtgatctcaaacagtatgtgtcggaaggt
aatttccgtgaagacttgtactaccgcctgaatgtgttcccaatcgcatggccagcgctg
aatgagcgtaaaggggacattgcgccacttgcgaagcatcttgccgagcgtcactgtagc
aaaatgggtatgcctgttcctcagttctcgccagttgcagtggaaaaactattgcagtac
ccatggccaggtaatgttcgagagctggataacgttgtacaacgcgcgctgattttgagt
gaaaacggcgatatcggtgcagagcacatcttgctagaaggcgtggattggcaagatgcc
aacagcttgcaatacgttgtgcaaagtgcagaaacattggtccctgatgtcaagcctgtt
gctcaagctgaatccgtcaaccgcgttaacactggcggcgaggggttgggtggcgagctg
cgcgatcaagagtacgcgatcattctagaaaccttggtggaatgtagtggccgacgcaaa
gaaatggcagagaaattgggcataagcccacgtactctgcgctacaaacttgccaaaatg
cgtgacgcgggtatagatattccgagttag
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