Vibrio fluvialis: AL536_07015
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Entry
AL536_07015 CDS
T04379
Name
(GenBank) methyl-accepting chemotaxis protein
KO
K03406
methyl-accepting chemotaxis protein
Organism
vfl
Vibrio fluvialis
Pathway
vfl02020
Two-component system
vfl02030
Bacterial chemotaxis
Brite
KEGG Orthology (KO) [BR:
vfl00001
]
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
AL536_07015
09140 Cellular Processes
09142 Cell motility
02030 Bacterial chemotaxis
AL536_07015
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02035 Bacterial motility proteins [BR:
vfl02035
]
AL536_07015
Bacterial motility proteins [BR:
vfl02035
]
Flagellar system
Chemotaxis proteins
MCPs
AL536_07015
BRITE hierarchy
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
MCPsignal
4HB_MCP_1
HAMP
Snapin_Pallidin
NrfD
DUF5368
Motif
Other DBs
NCBI-ProteinID:
AMF93193
UniProt:
A0AAX2LTB5
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Position
1:complement(1513133..1514758)
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AA seq
541 aa
AA seq
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MRSLSITRLVRANAILAVAAIIALSFYLIVTLTRVQQQFGMVVDRNVQLLTTISDMRYYT
VTYRRFALDYGLTTDSQEHQAIQRTIEFNDEAVANTLQRMKSLADSAEIQSAVFDFEHRI
EEYRAMQRHYLTLIDAGQIDAARREMLGPMLAPFNTIVERLTEFQHNLQQEAIRLKDDKQ
AEIERAIQWTVASAVVVVLLLLASGYLTARRVLLPLNRLKAHMSVVGQGNLQTPLAVKEF
KQDEFGQAAQAFMQMQNNLTQLILTVKESVHSLDLASEELAAKVAHTQQSVDAQKLEIGQ
IVRASRELVDNTQHIDAVTEQASQKSAQAKQQAQIGEQSIVSSIARTQTMSQLIGDTGQV
IDALYQRSADIGLISDVISNITKQTNLLALNAAIEAARAGEAGRGFAVVADQVRELAQQT
QSSIDEIGGIINNLQTQASSAQGMMAQCQSQIGENLQQVEEAGEAYHHIVHASEAIAEMD
SRIAALAQSQQELSSHVRDSIDAIADSSQEIESTASDTTQTYHALQTQTEHLKQYIGAFS
V
NT seq
1626 nt
NT seq
+upstream
nt +downstream
nt
atgcgttcactttctatcactcgcctcgtgcgcgccaatgccatactggctgtggccgcg
attattgcactgagcttttatctgattgttaccttaacccgtgtgcaacagcaattcggg
atggtggtcgatcgtaatgttcaactgctgaccaccatttccgatatgcgttattacacg
gtgacttaccgacgttttgccttggattacggcctcaccaccgacagtcaggagcatcag
gcgattcaacgtacaatcgaattcaacgatgaggcggttgccaacacgttgcagcgcatg
aaatcgctggcagatagcgctgagattcagtctgcggtatttgattttgagcaccgcatt
gaagaatatcgcgcgatgcagcgccattatctgaccctgattgatgccgggcagattgat
gcggcgcgtcgcgagatgctcggaccgatgctcgcgccgttcaacaccattgttgagcgt
ctgaccgagtttcagcataacttacagcaggaagcgattcgtctgaaagatgacaagcag
gcggagatcgaacgtgccattcagtggacggtcgcatccgccgtggtggtggtattgctg
ctgctcgcgagtggttatcttacggctcgccgtgtactgctgccactcaatcgtctcaaa
gcacatatgtcggttgtggggcaggggaatctgcagacgccactggccgtcaaagagttt
aagcaagatgagtttggtcaggcggcacaagcctttatgcagatgcagaacaatctgacc
cagttgatcctgacggtgaaagagagtgtgcactccttggatcttgcctctgaagaactg
gccgccaaagtggcgcacacacagcaaagtgtcgacgcgcagaagctggaaatcggtcag
attgtgagggcctcccgtgagctggtggataacacccagcacatcgatgcggtgaccgaa
caagcgtcgcagaaaagcgcacaggccaaacaacaagcgcaaattggcgagcagagcatc
gtcagttcgattgcgcgcactcagactatgtcgcaactgattggcgataccgggcaggtc
atcgatgcgctgtatcagcgcagcgccgacatcggcttgatttcggatgtcatcagcaac
atcaccaaacagaccaacctgctggcgctcaatgccgcgattgaggcagcacgcgctgga
gaggcagggcgcggttttgcggtggtggcggatcaggtccgagagttggcgcagcaaacc
caaagcagcattgatgaaattggtggcatcatcaacaacctgcaaacacaggcgtccagt
gcccaagggatgatggcgcaatgccagtctcaaattggcgagaatctgcagcaggtcgaa
gaggcgggcgaggcgtatcaccacattgtgcatgcgtcagaagccattgcagaaatggac
agccggattgccgcattagcacagtctcagcaagagttgtcgagccatgttcgcgacagc
attgatgccattgccgattcgtcgcaggagattgaatccacagcgagcgacaccacgcag
acttatcatgcgctacaaacacaaactgaacatttaaaacagtatatcggtgcttttagc
gtctaa
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