Leisingera methylohalidivorans: METH_18145
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Entry
METH_18145 CDS
T02961
Name
(GenBank) sensor protein TorS
KO
K07647
two-component system, OmpR family, sensor histidine kinase TorS [EC:
2.7.13.3
]
Organism
lmd
Leisingera methylohalidivorans
Pathway
lmd02020
Two-component system
Brite
KEGG Orthology (KO) [BR:
lmd00001
]
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
METH_18145
09180 Brite Hierarchies
09181 Protein families: metabolism
01001 Protein kinases [BR:
lmd01001
]
METH_18145
09183 Protein families: signaling and cellular processes
02022 Two-component system [BR:
lmd02022
]
METH_18145
Enzymes [BR:
lmd01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.13 Protein-histidine kinases
2.7.13.3 histidine kinase
METH_18145
Protein kinases [BR:
lmd01001
]
Histidine kinases
OmpR family
METH_18145
Two-component system [BR:
lmd02022
]
OmpR family
TorS-TorR (TMAO respiration)
METH_18145
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
TorS_sensor_domain
HATPase_c
Response_reg
HisKA
HAMP
Hpt
4HB_MCP_1
Peripla_BP_4
Motif
Other DBs
NCBI-ProteinID:
AHD02277
UniProt:
V9VZH0
LinkDB
All DBs
Position
3544717..3547644
Genome browser
AA seq
975 aa
AA seq
DB search
MLKKLGLGGKLSLAFVVIAGLPTLAGILGLIELRVLARRQAEVISQTIPAIAEVRGMAEE
STRIIAIAPELAAVDTQSEREKRTEFLSAQVEALTRRLEALETAGSTGSARLRETVTEAS
RVLPLLDALVETRIALHSEFNQLAGQNLSAANNLLSMADTLVANAEMGTTAVISSLYGHS
SSPIEEKARTDTLDKLIEVDLFQLGLMFELRSQTAEIGLLINRIEDARDETELGEIETSL
TSRLLIVSRRIKAIRDPGRRQQAESFAVQLRTVSEQDIGLFVLRHRILTTEGRITALQQG
LQDTALRLGDEAAAVADQAQARVIRSGNAAALDVQRAQLRNGFAAIAGLVLSLAVLWFYV
RGSITRRLNQLSGTMAALMRGQLDHRVRPQGHDEIARMEAAVEVFRQQAIDKLELESVRD
RNEQELREHRNNLQVLVNEQTERLQEEVEAHDEARRKAESADRAKSEFLAMMSHEIRTPM
NGVLGMLRSLSDDGLSAKQMERLRAALVSGQNLLKILNDILDYSKIESGALKPEISTFSL
RELVTDIVVLLRPGADSKGVHLWLDAPGNLPEAVQGDAAKLRQILFNLLSNALKFTDDGE
VILRIRINETASGRHRVTFEVSDTGKGISAEAKSRIFEAFEQEDTDTARKFGGTGLGLAI
SRHFAQTIGARLSLESTPGVGSVFTLALELEPGNPADLKCEEPPVPTKQAERPLSVLVVE
DNEINQMVAQGYLERMGHSCHCTGSAEDALELLPGSGFDLVLMDVNLPGISGTEATRRLR
ALPDRRVAELPVIGISAHVQKDQIETHLQAGMNGFVAKPVSPERLAKALDSVMQGREGAI
YLSDRQAALEQPNRRASLQKQMQENMRDLGERQALDIARIFEQELPLGLARMTAALKTLD
FATLAVEAHRAKGAASTFGQQDLAALLAALETLAEKGERNAAKDQLERLTDMVPHILHAL
AAVLRECETVSSKAP
NT seq
2928 nt
NT seq
+upstream
nt +downstream
nt
atgttaaaaaagcttggtcttggcgggaaattaagcctcgcattcgtcgtcattgcaggg
ctgcccacccttgcgggcatccttggcctgatcgaactgcgggtgcttgcacgccgccag
gcagaggtcatcagtcaaaccatcccggccatcgccgaagtccgcggcatggccgaggaa
agcacccgtatcatcgctattgctccggagctggccgcagtcgacacccagtccgaacgg
gaaaagcggacggaattcctgtcagctcaagtcgaagcactgacccggagacttgaagcc
ctggagacagctggcagcaccgggtccgcccggctgcgtgaaaccgtgacagaggcgtcc
cgcgtgctgccgctgcttgatgccctggttgagacccgcattgccctgcacagcgaattc
aaccagttggccgggcagaatctttccgctgcaaacaacttgctcagcatggccgacact
ttggtggcaaatgccgagatggggaccactgcagtgatatcaagcctttatggtcacagc
tcctccccaattgaggagaaagcccgtaccgatacgctggacaagctgatcgaggttgac
ctgttccaactgggcctgatgttcgaattgcggtcgcaaaccgccgaaatcgggctgctg
atcaaccggatcgaagacgcgcgcgatgaaaccgaactgggtgagatcgagacatctctg
accagccggttgctcatagtttcccgccggataaaggcgatccgcgaccctggacggcgc
cagcaggccgaaagctttgccgtgcaattacgtaccgtctcagagcaggacattgggctg
tttgtgctgcgccacaggattctgaccaccgaaggccgcataaccgcgctgcaacagggc
ttgcaggataccgcgttgcggcttggcgacgaggctgcagccgtggcagatcaggcccaa
gcacgggtgatccgatcaggcaacgcagccgctctcgacgttcagcgggcccaattgcgc
aacggctttgcggcgattgcagggcttgtgctgtcgcttgcagtcctgtggttttatgtg
cgcggaagcatcacccggcgccttaaccagctgtcggggacaatggcggccctgatgcgc
ggccagcttgaccaccgtgtgcgcccccaggggcatgacgaaatcgcccgtatggaggcg
gccgtcgaggttttccgccagcaagccatcgacaaattggaactggaaagtgtccgggat
cgcaatgagcaggaactgcgcgaacaccgcaacaatctccaggtcctggtcaatgaacag
accgagcggctgcaggaggaagtcgaagcccatgacgaggcccgtcggaaggcagaaagc
gccgatcgtgctaaatccgaattcctcgccatgatgagccatgaaatccgcacgccgatg
aatggcgtgcttggcatgctgcgcagcctttcggacgatggcctgtctgccaagcagatg
gagcggcttcgggcagcgctggtctccggccagaatctgctgaagattttgaatgacatt
ctggactactcgaaaatcgaaagcggtgcactgaagccggaaatcagcacattttccctg
cgggaactggtaaccgacatcgtcgtgctgctgcggcccggcgcggacagcaaaggcgtc
cacctgtggcttgatgcccccggcaatctgccagaggcagtgcagggcgatgccgccaag
ctccggcaaatcctgttcaacctgctgtccaacgccctgaaatttactgacgacggcgag
gtcattctgcggatccggattaacgagactgccagcggccgccaccgggtgacctttgaa
gtcagtgacaccggcaagggcatatcggcggaagcaaagtccagaatatttgaggccttt
gaacaagaggacacagataccgcccgcaagttcggcggcaccgggctggggctcgcaatc
agtaggcacttcgcccaaaccattggtgcccggctgtcgctggaaagcacccctggtgtg
ggttcggttttcacactggccctggagctggaaccggggaatcccgccgatctgaagtgt
gaagagccgccagtcccgacaaagcaagccgaacggcccctgtctgtgctggtggtcgaa
gacaacgaaatcaatcagatggtggcacaggggtacctggagcgtatgggacacagctgc
cactgcaccggcagcgccgaagacgcgctggaactgctacccggttccgggtttgatttg
gttctgatggatgtgaaccttccgggcatcagcggcaccgaagccacccgccgcctgcgc
gccctgcccgaccggcgggttgccgaattgccggtcatcggcatttcagcgcatgtgcaa
aaggaccagatcgagacgcacttgcaggctggcatgaacggttttgtcgccaaaccggtc
tctcctgaacgcctggccaaggctttagacagcgttatgcaggggcgcgagggcgcaatt
tacttgtccgaccgccaggctgccctggaacagccgaaccgccgcgccagccttcaaaaa
cagatgcaggaaaacatgcgtgatcttggcgaaaggcaagctttggacatcgcaaggata
tttgaacaggagcttccactaggccttgcccggatgactgcggctttgaaaacgctagac
ttcgcaactcttgcagtggaagcgcaccgagccaaaggagctgccagcacttttggccag
caggatcttgctgcgctgctggctgcgctggaaacactcgccgaaaaaggtgaaaggaac
gctgccaaggaccagttggaaaggctgacagacatggtcccgcacatcttgcacgcgcta
gccgcggtgctgcgggaatgtgaaaccgtcagttcaaaggcgccgtga
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