KEGG   Sardina pilchardus (sardine): 134061821
Entry
134061821         CDS       T10667                                 
Name
(RefSeq) toll-like receptor 2 type-2
  KO
K10159  toll-like receptor 2
Organism
spil  Sardina pilchardus (sardine)
Pathway
spil04145  Phagosome
spil04620  Toll-like receptor signaling pathway
spil05132  Salmonella infection
spil05168  Herpes simplex virus 1 infection
Brite
KEGG Orthology (KO) [BR:spil00001]
 09140 Cellular Processes
  09141 Transport and catabolism
   04145 Phagosome
    134061821
 09150 Organismal Systems
  09151 Immune system
   04620 Toll-like receptor signaling pathway
    134061821
 09160 Human Diseases
  09172 Infectious disease: viral
   05168 Herpes simplex virus 1 infection
    134061821
  09171 Infectious disease: bacterial
   05132 Salmonella infection
    134061821
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   04131 Membrane trafficking [BR:spil04131]
    134061821
  09183 Protein families: signaling and cellular processes
   04147 Exosome [BR:spil04147]
    134061821
   04054 Pattern recognition receptors [BR:spil04054]
    134061821
   04090 CD molecules [BR:spil04090]
    134061821
   00536 Glycosaminoglycan binding proteins [BR:spil00536]
    134061821
Membrane trafficking [BR:spil04131]
 Endocytosis
  Phagocytosis
   Toll-like receptors
    134061821
Exosome [BR:spil04147]
 Exosomal proteins
  Exosomal proteins of breast milk
   134061821
Pattern recognition receptors [BR:spil04054]
 Membrane-bound pattern recognition receptors
  Toll-like receptors
   134061821
CD molecules [BR:spil04090]
 Proteins
  134061821
Glycosaminoglycan binding proteins [BR:spil00536]
 Hyaluronan
  Cell surface receptors
   134061821
SSDB
Motif
Pfam: LRR_8 LRR_4 TIR LRR_1 TIR_2 LRR_LRWD1 LRR_9 LRRCT
Other DBs
NCBI-GeneID: 134061821
NCBI-ProteinID: XP_062373600
LinkDB
Position
2:9403052..9408162
AA seq 784 aa
MFVLLTLLTLSWGWWVSPHPKPKCDRCNENFVCDCSSSNLQEVPAISTRSVISMDLSFNE
IKTIEQDDFSEYNNLQVLILRGNMISSIAEQGFSTLRKLEVLDLSDNHLNDLSDIWFKSL
SSLHHLNLLGNEYETFGGKSLFRSMTQLSSLMVGNQFLASVSENSFIGLNHLQSFVFHGN
NLRSYQPGSFSQINSIDEVTVSIAGPFQTNTSLTTDILRDLSRPETRIIVSDLRISRQQL
KPFEIIFQKDVKDFLLRNLSCNMDTIGELFAMTHMSALTSIGLEDSEFDGEPTLSVEFPE
LRHIRETHIKNVKMEKFYIFPAFTCSNFMCTHLLRFATQLKRLVIIDSNFFAMPCIQSRL
FISLEYLDISRNQFSDITLPEAFCHGQWALLNLVAFNVSSNYLKSFDTLSHLFKGMEKLA
ALDVSLNVFRTMPKVCAWPQSLRFLNLSSCQLREVTSCLPKSLHILDLSYNDLMVFEQNI
TDLTELHLSGNRFKTLPEGKLFDRLEVLYIKSNPFISLSQNQIRNFGDLKILEAGTDTYV
CSCEFVNFFNHELGHLVSLKDSRQTYICSSPFALRGTKVSDAQLSVFECHAAVSFSALCV
FVLVVVIGAMVMCHKLHVVWYLRMTWAWLQAKRRPVAREDQVCYDAFVSYSENDAEWVEE
LLVPELEGAQPPFRLCLHKRDFLPGGWIADSIMAAMEKSHRILFIVTQHFVQSDWCRLEL
EYSHFRLFDAGILILLEPIPDSTIPTRFCKLRKVMNSRTYLEWPEEDNERPRFWQSLKDT
LQMA
NT seq 2355 nt   +upstreamnt  +downstreamnt
atgtttgttttactgactctactgacactcagctggggctggtgggtgtcccctcaccca
aaaccaaagtgtgatcgatgcaatgaaaactttgtttgtgactgctcttcttcaaatcta
caagaagttcctgctatctccacacgatcagtcataagcatggacctctcctttaatgaa
atcaagactatagagcaggatgacttctctgagtacaataatctacaggtcctgattctg
aggggaaatatgatatcctcaattgcagagcaaggtttctcaactctcagaaagttggag
gttttggacttgtcagataatcatttaaatgatttgtctgacatttggtttaagagtctc
tcctcccttcaccatctaaatcttttgggaaatgagtatgaaacatttgggggaaagtct
ctgtttcgctcaatgacacagcttagctctctaatggttgggaatcagtttcttgcctca
gtttctgaaaatagctttatcggactcaaccatcttcagagctttgtgtttcatggcaac
aatttgcggagctaccaaccaggtagcttcagccaaatcaactccattgatgaagtcact
gttagcattgctggtccatttcagacaaacacaagtcttacaacagacatcttgagagat
ctttcacgccctgaaaccagaatcatcgtgtcagatttgagaatcagcaggcagcaactg
aagccttttgaaataatctttcagaaggatgtcaaagactttctcttgagaaatctaagc
tgcaacatggacaccataggtgaactgtttgctatgacacacatgtcagcactgacctcc
attggcctggaggattcagagtttgatggagagccaaccctctctgtggaatttcccgaa
cttcggcatattcgtgaaacacacataaaaaatgtgaaaatggaaaagttttatatcttt
ccagcattcacctgtagtaacttcatgtgcactcatttgttgagatttgcaactcagctc
aagcggcttgttataattgatagcaatttctttgcaatgccatgcattcaatcacgcctt
tttatcagtcttgaatatcttgatattagtagaaaccagttcagtgatataacgttgcct
gaggcattttgtcatggtcaatgggctttgttaaatcttgttgcatttaatgttagcagt
aattacttgaagtcctttgacaccctgagccacctcttcaagggaatggagaagctggct
gcccttgatgtgagcctgaatgttttccgcactatgcctaaggtctgtgcctggccccag
tctctgcgcttcctgaatctctcctcatgccagttaagagaagtgacttcctgtctccct
aaaagtctacacatcctggatttgagctacaatgacctaatggtatttgaacaaaacata
acagacctgactgagctccatctatctggaaacagattcaagaccttacctgaggggaaa
ctctttgaccgcttggaggtgctctacatcaagagcaaccctttcatatccctcagtcaa
aaccagatcaggaactttggtgacctcaagatcttggaggctggtacagacacgtatgtg
tgctcttgtgaatttgtgaacttcttcaaccatgaacttggtcatttagtcagtttaaag
gacagtaggcagacatacatctgcagttcaccatttgcactgagggggacaaaagttagc
gatgcccaactctctgttttcgagtgccacgcagcggtgtccttctctgccctgtgtgtg
tttgtgcttgtggtcgtcattggtgccatggtgatgtgtcacaagctgcacgtggtttgg
tacctgcgaatgacatgggcatggctgcaggccaaacggagacctgtggcccgtgaggat
caggtgtgctatgacgccttcgtgtcctacagtgagaatgatgcggagtgggtggaggag
ctgctggtgccggagctggagggtgcccagccgccattccgcctctgcctgcacaaacgg
gacttcctaccagggggctggattgcggacagtatcatggcggccatggagaagagccac
aggattcttttcatagtgacccagcactttgtccagagcgactggtgccgcttagagttg
gagtactcacacttccgcctgtttgatgcaggcatactcatcctcctggagcctatccct
gactccacaattcccacacggttctgcaagctgcgcaaggtcatgaactcaaggacctat
ctggaatggccagaggaagacaatgaaagacccagattctggcagtctcttaaagacact
ttacaaatggcttaa

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