Girardinichthys multiradiatus (darkedged splitfin): 124865385
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Entry
124865385 CDS
T08099
Symbol
tlr18
Name
(RefSeq) toll-like receptor 18
KO
K10159
toll-like receptor 2
Organism
gmu
Girardinichthys multiradiatus (darkedged splitfin)
Pathway
gmu04145
Phagosome
gmu04620
Toll-like receptor signaling pathway
gmu05132
Salmonella infection
gmu05168
Herpes simplex virus 1 infection
Brite
KEGG Orthology (KO) [BR:
gmu00001
]
09140 Cellular Processes
09141 Transport and catabolism
04145 Phagosome
124865385 (tlr18)
09150 Organismal Systems
09151 Immune system
04620 Toll-like receptor signaling pathway
124865385 (tlr18)
09160 Human Diseases
09172 Infectious disease: viral
05168 Herpes simplex virus 1 infection
124865385 (tlr18)
09171 Infectious disease: bacterial
05132 Salmonella infection
124865385 (tlr18)
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:
gmu04131
]
124865385 (tlr18)
09183 Protein families: signaling and cellular processes
04147 Exosome [BR:
gmu04147
]
124865385 (tlr18)
04054 Pattern recognition receptors [BR:
gmu04054
]
124865385 (tlr18)
04090 CD molecules [BR:
gmu04090
]
124865385 (tlr18)
00536 Glycosaminoglycan binding proteins [BR:
gmu00536
]
124865385 (tlr18)
Membrane trafficking [BR:
gmu04131
]
Endocytosis
Phagocytosis
Toll-like receptors
124865385 (tlr18)
Exosome [BR:
gmu04147
]
Exosomal proteins
Exosomal proteins of breast milk
124865385 (tlr18)
Pattern recognition receptors [BR:
gmu04054
]
Membrane-bound pattern recognition receptors
Toll-like receptors
124865385 (tlr18)
CD molecules [BR:
gmu04090
]
Proteins
124865385 (tlr18)
Glycosaminoglycan binding proteins [BR:
gmu00536
]
Hyaluronan
Cell surface receptors
124865385 (tlr18)
BRITE hierarchy
SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
LRR_8
TIR
TIR_2
LRR_4
LRR_1
LRR_NXF1-5
LRR_9
LRR_5
LRR_LRWD1
Motif
Other DBs
NCBI-GeneID:
124865385
NCBI-ProteinID:
XP_047216365
LinkDB
All DBs
Position
3:42820151..42851614
Genome browser
AA seq
878 aa
AA seq
DB search
MILELISFSGLFLGAVSSPSSPAPSSPPTASSVEERCRMYNSGQSADCRGRQLDFVPWRQ
FPVTLESIDLSYNVLHAISAADFQNLPQLHTLLLQFNNISHIDNDAFKNNPLLEHLNIFN
NSLQEIPASPLTSVLNLKYLDMSNNLYKHATLANSFSKLVRLKALSMGGPLVMGLKKKDF
HSLKNIELQDFAIKCSSNLSYYEPGSLEVIQTKQMRFDMAIDQRPNALHHILHDLSNKTI
SLIQFRNLFEFTYYMGEEDIFLNLKYVRAFQLIFHRGKFNENLLRMALLNLQVTPIKWLR
LQYIDFARSPTFVDSGAGSSITNLALDNLDLWYISNPDVLRFDWRFTWFKKIKELSIQYV
YFNSVPCDSWTEMEGVELLDVSNNRINDYILYNKRCNYRDTMPNLQTLNLSTNDLTSLED
VSSLTKEFRKLQVLDLSNNKLGSTKERPNCVWTQNITHLIAPHNRFASEAFNCLPTTVYY
LDLSNCNLDQLDITYFKKATNLKNLLLSGNKIKFIPSKWESQSIQLLAMDGNSFGLISKA
SFQHMPQLSQLRAGNNPYHCTCELHTFVQDTIARGKVNLTDWPWNYRCYHPESFLNTFIS
KYFPGQIACDIRLVIIISVATTATVILIFVLICYIFDLPWYTKATYQIIRAKYRAHKENL
AGDIENFKYHAFISYSHSDAEWVRDHLLPCLENNKNPYRLCIHERDFMPGRWIIDNIIEN
IECSRKVIFVLSLHFVNSEWCNYELYFAQQRAMGKTFSDIILVLKEPIDPNSLPSKYCKL
KKMLSTKTYLEWPQQVNQQPFFWAQLRSVLGKPIMTREVANSNRSRISSGGVSVIGPLVE
ESIPEVGIPNEDPLEKIHNEIIHKNDIELEDQINTEAC
NT seq
2637 nt
NT seq
+upstream
nt +downstream
nt
atgattttggaattaatcagtttcagtggtctctttcttggagctgtgtcatctccatcc
tcaccagctccatcttcacctcccactgccagttctgttgaagaacgctgtcggatgtac
aattctggccagtccgcagactgtcgtggaagacagcttgattttgttccatggagacaa
tttccagttactcttgagagcatagatctttcttataatgtgcttcatgctatcagtgct
gcagacttccagaacctccctcagcttcacacccttctgctgcagttcaacaacatttca
cacattgataatgatgcctttaaaaacaacccattactggagcatctgaacatttttaat
aactcactgcaggagattcctgcatcacctctgacatctgtactgaatctaaagtacctc
gatatgtccaataacctttataaacatgcaactttagcaaacagtttctctaaattagtc
agactcaaggctctgtctatgggtggccctttggtgatgggactaaagaaaaaggatttt
cattccctaaagaacattgaattacaagattttgctatcaagtgctcctcaaatttaagt
tactatgagccaggaagtttagaagtcattcagacaaagcagatgcgatttgacatggcg
atagatcaacgaccaaatgctctccatcatatactacatgatctctccaacaagacgatc
agcctaattcagtttcgcaacctctttgaattcacatactacatgggcgaggaagatatt
ttcctgaatttaaaatacgttagagcatttcagctcatctttcacagaggcaagtttaat
gaaaatctcctgaggatggctttactcaacttacaagtgactcctatcaaatggcttaga
cttcagtacattgactttgcccgttcaccaacatttgttgacagtggtgcaggttctagt
ataaccaacctggcactagacaacttggatctctggtatatcagcaatcctgatgtgctg
cgttttgactggcgcttcacctggttcaagaaaataaaagagctgtctattcagtatgtg
tatttcaacagcgttccttgtgactcctggactgagatggaaggtgtggagttgttggat
gtctctaacaatcgaataaacgattacattttatacaacaagaggtgtaattacagggac
accatgccaaatctacaaaccctcaacctgagcaccaatgacttgaccagtttagaagac
gtatcatctctaacaaaggagtttaggaagctgcaggtgctggatcttagcaacaacaaa
ctgggatctacaaaagaaaggccaaactgtgtttggacacaaaatataactcatctaatt
gctccccacaatcggtttgcgagcgaagcatttaactgtctacctaccacggtgtattac
ttggatctgtccaactgcaacctggaccaactagacatcacttactttaagaaagccaca
aatctgaaaaatctcttactgagtgggaataaaattaagttcatcccatcaaagtgggag
agtcaatctattcagttgttagctatggatggaaattcgtttggtttgattagcaaggca
tctttccaacatatgcctcaattgtctcagctcagagcaggaaacaatccttaccattgt
acttgtgagcttcacacctttgtccaggacaccatagcaagaggaaaggttaatctcact
gactggccctggaactaccgatgctatcacccagagtccttcctcaacaccttcatatcc
aaatactttcctggtcaaatagcatgtgacatcagacttgttataatcatctctgttgca
accactgccacagtgatcttgatatttgttctaatttgctatatttttgacctcccgtgg
tacactaaagccacgtatcagattatacgggccaaatacagagctcacaaggaaaatcta
gctggggacattgagaacttcaaatatcatgccttcatatcctacagccactcagatgct
gaatgggttagagaccatctcttaccctgtttggaaaacaacaagaacccctatcgtctg
tgtattcatgagcgggactttatgccaggaagatggatcattgacaacatcattgagaac
attgaatgcagtcgtaaggttatctttgtcctgtctctacactttgtgaacagtgaatgg
tgcaactacgaactgtactttgctcagcagagagcaatgggtaagaccttcagtgacatc
atcctggtgttgaaggagcccattgatccaaactccttgcccagcaagtactgcaagctc
aaaaagatgctgagtaccaaaacatacctggagtggccccaacaggtgaaccagcagccc
ttcttctgggctcagctgaggagtgttctgggtaaacctataatgacccgtgaggtggct
aacagcaataggagtagaatctcatctggaggagtttctgtgattgggccccttgttgaa
gaaagcatcccagaagtaggcatacctaatgaagaccccttagagaaaattcacaatgaa
attattcacaaaaatgatattgaactagaagaccaaataaatacagaggcatgttga
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