Burkholderia pseudomallei MSHR305: BDL_356
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Entry
BDL_356 CDS
T02756
Name
(GenBank) hypothetical protein
KO
K05874
methyl-accepting chemotaxis protein I, serine sensor receptor
Organism
bpse
Burkholderia pseudomallei MSHR305
Pathway
bpse02020
Two-component system
bpse02030
Bacterial chemotaxis
Brite
KEGG Orthology (KO) [BR:
bpse00001
]
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
BDL_356
09140 Cellular Processes
09142 Cell motility
02030 Bacterial chemotaxis
BDL_356
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02035 Bacterial motility proteins [BR:
bpse02035
]
BDL_356
Bacterial motility proteins [BR:
bpse02035
]
Flagellar system
Chemotaxis proteins
MCPs
BDL_356
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
MCPsignal
TarH
4HB_MCP_1
HAMP
COG6_N
Motif
Other DBs
NCBI-ProteinID:
AGR72019
LinkDB
All DBs
Position
2:complement(457983..459863)
Genome browser
AA seq
626 aa
AA seq
DB search
MLLKNITIRARLAVTMALLSVLLCAVGALGLFGMSRANDANEQTSSNQLPSAIDVASAEL
FAARERLVLDRAALLAGTPDVAPTIERARQMRGVSDSWWKKYLDLPRDAQEDRLAQDLAS
KRQILQRELDAAAALINANDRDRILESAKRMQNVFNDFSLASEALRAFQLKQASVNFSDA
QSVYAASRVASIAALALGLALSLYCFLSLRAAIARPLADALGHFDAIAAGELRRPIVVER
RDEMGLLLEGLAKMQASLAGTVRAVRVGSESIATAARQIAAGNIDLSSRTEEQAAALEQT
ASSMEELTGTVRRNADNARQASALAASASEIANKGNAVVGQVVGTMGDINQSSAKIADII
TIIEGIAFQTNILALNAAVEAARAGEEGRGFAVVAGEVRSLAQRSSTAAKEIKELIDTSV
ERVRTGSMLVDDAGRTMSEVIGAVRRVTDIMGEIAAASDEQSTGIDQVSRAVSQMDEVTQ
QNAALVEQAAAAAQSLDEQAARLRATVSVFHVDDGDARDVASRPPARPGAGAVHRAAGAA
APAQAGASSGAHAAPAAYAARKPAPSAALAKAAPVASVTSAASVTPAASAPTLAAAAAKP
KPAPAAPRAGSVTAASAASDDDWETF
NT seq
1881 nt
NT seq
+upstream
nt +downstream
nt
atgctgctgaagaacatcacgatcagagcgcgcctcgccgtcacgatggcgctcctttcc
gtcctgctgtgcgccgtcggtgcgctcggcctcttcggcatgagccgggccaacgacgcg
aacgagcaaacgtcgtcgaatcaactgccgagcgcgatcgacgtggcgagcgcggagttg
ttcgccgcccgagagcgcctcgtgctcgatcgcgcggcgctcctcgcgggcacgccggac
gtcgcgccgacgatcgagcgcgcgcgccagatgcgcggagtctccgattcgtggtggaaa
aaatacctcgacctgccgcgcgacgcgcaggaggaccgcctcgcgcaggacctcgcatcg
aaacggcagattctgcagcgtgagctcgacgcggccgccgcgttgatcaacgcgaacgat
cgcgacagaatcctcgaatccgccaagcggatgcagaacgtattcaacgatttctcgctg
gcgagcgaggcgctgcgcgcgtttcagctcaagcaggcgagcgtcaacttcagcgatgcg
caaagcgtatacgcggcgagccgggtcgccagcatcgccgcgctcgcgctcggcctcgcg
ctctcgctgtactgcttcctgagcctgcgcgcggcgatcgcccggccgctcgccgacgcg
ctcggtcatttcgacgcgatcgccgcgggcgagctgcgccgcccgatcgtcgtcgaacgg
cgcgacgagatgggcctgctgctcgaagggctcgcgaagatgcaggcaagcctcgcgggc
accgtgcgcgcggtgcgcgtcggcagcgaatcgatcgcgacggcggcccggcagatcgcg
gcgggcaacatcgatctgtcctcgcgcaccgaggagcaggcggcggcgctcgaacagacg
gcgtcgagcatggaggaactgacgggcacggtgcggcgcaacgcggataacgcgcggcag
gcgagcgcgctcgcggcgagcgcgtcggagatcgcgaacaagggcaacgcggtggtcggc
caggtggtcggcacgatgggcgacatcaaccagagctccgcgaagatcgccgacatcatc
acgatcatcgagggaatcgcgttccagaccaacatcctcgcgctgaacgcggcggtcgag
gcggcgcgcgcgggcgaggaagggcgcggcttcgcggtcgtcgcgggcgaggtgcgcagc
ctcgcgcagcgttcgtcgacggccgccaaggagatcaaggagctgatcgacacgtcggtc
gagcgcgtgcgcacgggctccatgctcgtcgacgacgcgggacgcacgatgagcgaggtg
atcggcgcggtgcggcgcgtgaccgacatcatgggcgagatcgcggcggcctcggacgag
cagagcaccggcatcgaccaggtgtcgcgcgccgtatcgcagatggacgaggtcacgcag
cagaacgcggcgctcgtcgagcaggccgcggcggccgcgcaatcgctagacgagcaggcc
gcgcggctgcgcgcgaccgtttcggtgttccatgtcgatgacggcgatgcgcgcgatgtc
gcctcgcgcccgccggctcggccgggggccggcgccgtgcaccgggcggcgggcgcggcc
gcgccggcgcaggccggcgcgtcttcgggcgcgcacgccgcgccggcggcgtatgcggcg
cgcaagcccgcgccgtccgctgcgctcgcgaaagccgcgcctgttgcgtccgttacatcc
gctgcatccgttacgcccgctgcgtctgcgccgacgcttgccgcggcagcggcgaagccc
aaacccgcgcccgccgcgccgcgcgccgggtcggttactgcggcgtccgccgcgagcgac
gacgattgggagaccttctaa
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