KEGG   Carassius gibelio (silver crucian carp): 128016583
Entry
128016583         CDS       T08819                                 
Name
(RefSeq) B-cadherin-like isoform X1
  KO
K05689  cadherin 1, type 1, E-cadherin
Organism
cgib  Carassius gibelio (silver crucian carp)
Pathway
cgib04371  Apelin signaling pathway
cgib04514  Cell adhesion molecules
cgib04520  Adherens junction
cgib05100  Bacterial invasion of epithelial cells
Brite
KEGG Orthology (KO) [BR:cgib00001]
 09130 Environmental Information Processing
  09132 Signal transduction
   04371 Apelin signaling pathway
    128016583
  09133 Signaling molecules and interaction
   04514 Cell adhesion molecules
    128016583
 09140 Cellular Processes
  09144 Cellular community - eukaryotes
   04520 Adherens junction
    128016583
 09160 Human Diseases
  09171 Infectious disease: bacterial
   05100 Bacterial invasion of epithelial cells
    128016583
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03036 Chromosome and associated proteins [BR:cgib03036]
    128016583
  09183 Protein families: signaling and cellular processes
   04515 Cell adhesion molecules [BR:cgib04515]
    128016583
   04090 CD molecules [BR:cgib04090]
    128016583
Chromosome and associated proteins [BR:cgib03036]
 Eukaryotic type
  Centrosome formation proteins
   Other centrosome associated proteins
    128016583
Cell adhesion molecules [BR:cgib04515]
 Cadherins
  Major cadherins
   128016583
CD molecules [BR:cgib04090]
 Proteins
  128016583
SSDB
Motif
Pfam: Cadherin CADH_Y-type_LIR Cadherin_pro BACON_2 Cadherin_4 TM_ErbB1 Glucodextran_B
Other DBs
NCBI-GeneID: 128016583
NCBI-ProteinID: XP_052457169
LinkDB
Position
A7:complement(9412341..9437586)
AA seq 878 aa
MACARIVRLGVTIILCQVTVSPCGYAEGSTCTPGFESDVFVFKVHRDHLHMGKRIGRVVF
NNCDGRKRTHFQSVDKWFDVNTDGTVMLQRQVTLHEGQKVFSVHAWDYSGKKHTVSVKVE
RIHHHKRHHMDTFTNIYSQEKELPSDQVLTFPKSSTRAKRDWVIPPFQVPENSRGPFPMK
LVQIKSNFDKETQMQYSITGEGANENPKGIFIIDKLSGNLFVTQPLDREKKASYGLIAYA
RADVSNIEEKPLEIVINVMDQNDNKPVFTQNPFNGHVHEAAGKGYEFMTVTATDADDPNT
YNGIVRYSIVSQEPQFPKPNMFYINILSGTIQVQEPGIDREQWPRYTLLIVAADMEGEGL
ATTGTAVITITDSNDNPPEFDHNLHTVSVPENEFGAIVAKLTVTDGDEVGSPAWSTKYRI
ITGDKGGFFNVSTGPSQLEGILTTVKPLDFEKTKQYVLSVVVENVDPFVGSLPTSTATVT
VNVQDVNEPPEFNPKEKVIFKPEDTPVDTVLVPYTATDPDTGRSQKITYKMDVDDAGWLS
VSPETGEIKVRNLMDRESAYVKDGKYRAIILAMDDDATSPATGTGTLVIELENVNDNAPI
INEGNIKMCNRGSSPILLSITDKDGPPFGAPFSVETQGETSKNWSTSMSDTSTGVFLQLK
STLEQGDYNVVLRVYDLHRLYQDSYIHATVCDCKGDEVQCIGGVALSGALGIPAAILVLL
LLVLLLLLFLRRKRSTEKEPLLPEDDLRDNIYYYDEEGGGEDDQDYDLSVLHRGLDNRPE
VFRNDVVPTFLSAPQYRPRPGNPEEIGKFIDDNLKAADNDPTAPPYDSLLVFDHEGDSDV
GSLSSLNSSSSGQDQDYDFLSEWGPRFKKLSDMFGGED
NT seq 2637 nt   +upstreamnt  +downstreamnt
atggcttgtgcaaggattgtgcgcctcggagttaccattattctttgtcaggtaacggta
tcgccgtgtggatatgcggaggggtcgacatgtacacctgggtttgagtcggacgtattc
gtttttaaagtgcacagagatcaccttcacatgggaaaaagaataggaagagttgttttc
aataactgcgatggaagaaaaagaacccactttcagtccgttgacaagtggtttgatgtg
aatacggatgggactgtaatgctgcagaggcaagtgactcttcacgaaggccaaaaggtg
ttttctgtgcatgcctgggactacagtggcaagaagcacactgtttccgtcaaagttgag
cgtatccaccatcataagaggcatcacatggatacgttcactaacatctactctcaagag
aaggaattgccctctgatcaggtcctgacttttccaaaatcttcaacgagagcaaagaga
gattgggttatacctccattccaagtaccagagaatagcagaggtccgttcccaatgaag
ctggtccagataaagtcaaattttgacaaggaaactcaaatgcaatacagcatcacaggt
gaaggggcgaatgagaacccaaagggaattttcattattgataaattatcagggaatctc
tttgtgactcaaccacttgacagggaaaaaaaagcttcatacggacttatagcttatgct
agagctgatgtgagtaatatagaagaaaaaccattggaaattgtcatcaacgtgatggac
caaaatgataataagcctgtgtttactcaaaatccttttaatggacatgttcatgaagct
gctggaaaaggttatgagtttatgaccgtcacagccactgatgcagatgacccaaacacg
tacaatggtatagtaagatattcgattgtcagtcaagagccacaatttccaaaaccgaac
atgttttatatcaacattttatctggaaccatacaagtccaagaaccaggcatagaccga
gagcaatggcccagatatactttgttaattgtggctgctgacatggaaggagaaggatta
gcaaccactggcacagccgttattacaattactgacagcaatgataacccaccagagttt
gatcataatttgcacaccgtatccgtcccggagaatgaatttggggctatagtggccaaa
cttacagttactgatggagatgaagttgggtcacctgcctggtcaaccaagtatcggatt
attactggtgacaagggtgggtttttcaatgtcagtactggacccagccagctggagggc
atcctcaccactgtaaagcccctggactttgagaagaccaagcaatacgttctgtctgtg
gttgttgagaatgttgatccttttgttggttctttgcccacttccactgccacagtcact
gtcaatgtacaagatgtaaatgagcctcccgagtttaatccaaaggagaaggttattttc
aaacctgaagatacaccagttgatactgttttggttccttatacagccactgatccagat
accggaagatcacagaagataacgtataaaatggatgttgacgatgctggctggctaagt
gtgtctccagagactggagagattaaagtgaggaaccttatggatcgagaatctgcctat
gtcaaagatggcaaatacagagctatcatattggccatggatgatgatgcaacatctcca
gcgaccggcacaggaaccttggtaattgaattggagaatgtaaatgacaacgctcctatt
attaatgaagggaatataaaaatgtgtaatcgtggatcatctccaattcttctatctata
acggacaaagatggacctccttttggtgcaccctttagcgtcgagacccaaggagaaacc
agtaaaaactggtccacctcgatgagtgacacatcaactggtgtttttctgcaactcaag
tctactttggagcaaggggactataatgtagttctgagagtttatgatctacataggctg
tatcaggacagctacattcacgcaactgtgtgtgactgcaaaggagatgaagtgcaatgt
attgggggggtggcattatctggagctcttggaatcccagcagcaatcttggttctcctg
ctgctcgttcttcttctgcttttgttcctgaggaggaaaaggagtaccgaaaaagaaccc
ctccttcctgaagatgatttaagagacaatatctactattatgatgaggaaggtggtgga
gaagacgatcaggattatgatttgagtgtgttgcatcgtggcttggacaacagacctgaa
gtgttccgaaatgatgtggtgcccactttcctgtcagcacctcagtatagaccacggcca
ggcaatcctgaggagattgggaaattcattgatgataatctgaaggctgcagataatgat
cccacagctcccccatacgactccctcctggtgtttgatcatgaaggagactctgatgtg
ggttcactcagctccctcaactcttccagctcaggacaggaccaagactatgacttcctc
agtgagtggggcccacgctttaagaagctgtcagacatgtttggaggagaggattaa

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