Thiorhodovibrio litoralis: Thiosp_00944
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Entry
Thiosp_00944 CDS
T09560
Symbol
mcp1
Name
(GenBank) Methyl-accepting chemotaxis protein 1
KO
K03406
methyl-accepting chemotaxis protein
Organism
tlr
Thiorhodovibrio litoralis
Pathway
tlr02020
Two-component system
tlr02030
Bacterial chemotaxis
Brite
KEGG Orthology (KO) [BR:
tlr00001
]
09130 Environmental Information Processing
09132 Signal transduction
02020 Two-component system
Thiosp_00944 (mcp1)
09140 Cellular Processes
09142 Cell motility
02030 Bacterial chemotaxis
Thiosp_00944 (mcp1)
09180 Brite Hierarchies
09183 Protein families: signaling and cellular processes
02035 Bacterial motility proteins [BR:
tlr02035
]
Thiosp_00944 (mcp1)
Bacterial motility proteins [BR:
tlr02035
]
Flagellar system
Chemotaxis proteins
MCPs
Thiosp_00944 (mcp1)
BRITE hierarchy
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
MCPsignal
Cache_3-Cache_2
sCache_3_3
HAMP
sCache_3_2
dCache_1
McpB_HAMP_1st
Fib_alpha
BLOC1_2
Syntaxin_2
bHLH_ILI
Terminase_4
Sigma70_ner
COG6_N
Fez1
Motif
Other DBs
NCBI-ProteinID:
WPL11214
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Position
1041148..1043070
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AA seq
640 aa
AA seq
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MNSKSLQAKVTAALSLFIVLATLGVVIVVSVTQSDAIHARADQEVRTNLNRVRGLLSVTD
ALMSERVASSMALLKERGAELGTPSIGDPVRVKDRTLGDLLLGEEPQANRFELVDGVTKL
MGGTATLFVRQGRDFVRISTNVKKDGQRAIGTILAPDGKVIEMIREDRSFAGQVDILGTP
YVTSYEPMFNASRELVGIWYVGYKADLGELEQTIRESHILEQGFLALVDDQGRVRFHSHE
QDDIAQAVVAGKRDDWVVERVDYPGWGYQVVAAYQESEIRDRVLGTVGIIVISGVILGAF
AILGIGLLVKTLVIVPVRDAMAVAQRISDGHLDTPIKTSRNDEIGRLLSSLDRMQTVLRG
FIDQICDTARELSSSSDELRTVTDETVRGVGDQHAQTDQVATAMNEMAATVAEVARNAAA
AAEATGSADREAREGHRVVQGTMSAIESLAQEVERAAQTIQKLEQDSEKIGTVLDVIRGI
AEQTNLLALNAAIEAARAGEQGRGFAVVADEVRTLATRTQSSTQEISGIIDALQVGSRES
VATMSENCDRARRTVEQAELASRSLTTITDAVAQMNDMNNQIAAAAEEQTAVAEEVNRNV
TAIRDIAESTSDGAQKSASASARLAELSDDLREILSQYQK
NT seq
1923 nt
NT seq
+upstream
nt +downstream
nt
atgaactcaaagtccctgcaagcgaaagtcaccgcggcgctgagcctgtttatcgtgctt
gccaccctgggggtggtgatcgtggtctccgtcacccagagcgatgccattcacgcgcgg
gcggatcaggaggtcaggaccaacctcaatcgggtgcggggactcttgtccgtgactgac
gcgctcatgagcgagcgcgttgcctcctccatggcgctgctcaaagagcgtggcgccgag
cttggcaccccgtcgatcggcgacccggtgcgggtgaaggatcgcaccctcggcgatctc
ctgcttggcgaggagccgcaggccaaccgcttcgagcttgtcgacggggtcaccaagctg
atgggtggcaccgcgacgctgttcgtgcgccagggcagggactttgtgcgcatttcgacc
aacgtcaagaaagacggtcagcgcgccatcggcaccatcttggcgccagacggaaaagtg
atcgaaatgattcgcgaggaccgttccttcgccggtcaggtcgacattctcggtaccccc
tatgtcaccagttatgagcccatgtttaacgccagtcgggagctggtgggcatctggtac
gtcggctacaaggccgatctgggggagctggagcagacgatccgcgagagccacattctc
gagcaggggtttctggctctggtcgatgatcaggggcgggtgcgcttccattcccacgag
caggatgatattgcccaggctgtggtggcgggcaagcgcgacgattgggtggtcgaacgc
gtcgattaccccggttggggatatcaggttgttgcggcctaccaggaatccgagattcgt
gaccgcgtccttggtaccgtcggcatcatcgtcatcagcggtgtgatcctcggcgcattc
gccattcttggcatcggtctgctcgtcaagaccctggtgatcgtcccggtgcgggacgcg
atggcggtggcccaacgcatcagtgacggccacttggatacgccaatcaagacctcccgc
aacgatgaaatcggtcgtttgctgagttccctggatcggatgcaaacggtgctgcgcgga
ttcattgatcagatctgcgacaccgcgcgcgagctcagttcgtcatccgatgagctgaga
acggtcaccgatgaaaccgtgcgcggggtcggcgatcagcacgcccagaccgatcaggtt
gccacggcgatgaatgagatggctgccacggtcgcggaggtcgcgcgtaacgctgctgcg
gcggccgaagccaccggtagtgccgaccgcgaagcacgcgaagggcatcgggtggttcaa
ggcaccatgagcgcgattgaatccctggcgcaagaagtcgagcgtgccgctcagacaatc
cagaagctcgaacaagacagcgagaaaatcggtaccgtcctcgatgtgatccgtggcatt
gccgagcaaaccaatctcctcgcgctcaatgcggccattgaggcagcgcgcgccggtgaa
caggggcgtggcttcgcggtggtggccgatgaggtgcggacactggccacccgcacccag
agctcgacccaggaaatttccgggattatcgacgcgctccaggtaggttcgcgcgaatcc
gtggcgaccatgagcgaaaattgcgatcgcgctcggcggactgtggagcaggcggagttg
gcgtccagatcgctcaccaccatcacggatgcggtggcgcagatgaacgacatgaacaac
cagattgccgccgccgccgaagagcagaccgctgtggccgaggaggtgaaccgcaacgtc
accgcgattcgcgacattgccgagagcaccagcgatggcgcgcaaaagagcgcgagcgct
tcggcacgcttggcagagctgtcagatgatctgcgcgagattctgagccagtatcagaaa
tga
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