Entry |
|
Symbol |
NCAM1
|
Name |
(RefSeq) neural cell adhesion molecule 1 precursor
|
KO |
K06491 | neural cell adhesion molecule |
|
Organism |
fca Felis catus (domestic cat)
|
Pathway |
fca03265 | Virion - Ebolavirus, Lyssavirus and Morbillivirus |
|
Brite |
KEGG Orthology (KO) [BR:fca00001]
09120 Genetic Information Processing
09125 Information processing in viruses
03265 Virion - Ebolavirus, Lyssavirus and Morbillivirus
493956 (NCAM1)
09130 Environmental Information Processing
09133 Signaling molecules and interaction
04514 Cell adhesion molecules
493956 (NCAM1)
09160 Human Diseases
09164 Neurodegenerative disease
05020 Prion disease
493956 (NCAM1)
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:fca04131]
493956 (NCAM1)
09183 Protein families: signaling and cellular processes
04515 Cell adhesion molecules [BR:fca04515]
493956 (NCAM1)
04090 CD molecules [BR:fca04090]
493956 (NCAM1)
00536 Glycosaminoglycan binding proteins [BR:fca00536]
493956 (NCAM1)
00537 Glycosylphosphatidylinositol (GPI)-anchored proteins [BR:fca00537]
493956 (NCAM1)
04091 Lectins [BR:fca04091]
493956 (NCAM1)
Membrane trafficking [BR:fca04131]
Exocytosis
Tethering complex
Exocyst complex assembly proteins
493956 (NCAM1)
Cell adhesion molecules [BR:fca04515]
Immunoglobulin superfamily
NCAM1/2
493956 (NCAM1)
CD molecules [BR:fca04090]
Proteins
493956 (NCAM1)
Glycosaminoglycan binding proteins [BR:fca00536]
Heparan sulfate / Heparin
Adhesion molecules of cell surface
493956 (NCAM1)
Glycosylphosphatidylinositol (GPI)-anchored proteins [BR:fca00537]
Others
493956 (NCAM1)
Lectins [BR:fca04091]
I-type lectins (Siglecs)
493956 (NCAM1)
|
SSDB |
|
Motif |
|
Other DBs |
|
LinkDB |
|
Position |
D1:10980043..11294689
|
AA seq |
846 aa
MLQTKDLIWTLFFLGTAVSLQVDIVPSQGEISVGESKFFLCQVAGDAKDKDISWFSPNGE
KLTPNQQRISVVWNDDSSSTLTIYNANIDDAGIYKCVVTGEDGSESEATVNVKIFQKLMF
KNAPTPQEFREGEDAVIVCDVVSSLPPTIIWKHKGRDVILKKDVRFIVLSNNYLQIRGIK
KTDEGTYRCEGRILARGEINFKDIQVIVNVPPTVQARQSIVNATANLGQSVTLICDAEGF
PEPTMSWTKDGEQIENEEDDKYVFSDDSSELTIRKVDKNDEAEYVCIAENKAGEQDASIH
LKVFAKPKITYVENQTAMELEEQVTLTCEASGDPIPSITWRTSTRNISSEEKTLDGHMVV
RSHARVSSLTLKSIQYTDAGEYICTASNTIGQDSQSMYLEVQYAPKLQGPVAVYTWEGNQ
VNITCEVFAYPSATISWFRDGQLLPSSNYSNIKIYNTPSASYLEVTPDSENDFGNYNCTA
VNRIGQESLEFILVQADTPSSPSIDQVEPYSSTAQVQFDEPEATGGVPILKYKAEWRAVG
EEVWHFKWYDAKEANMEGIVTIVGLKPETTYAVRLAALNGKGLGEISTASEFKTQPVREP
SAPKLEGQMGEDGNSIKVNLIKQDDGGSPIRHYLVKYRALSSEWKPEIRLPSGSDHVMLK
SLDWNAEYEVYVVAENQQGKSKAAHFVFRTSAQPTAIPANGSPTSGLSTGAIVGILIVIF
VLLLVVVDITCYFLNKCGLLMCIAVNLCGKAGPGAKGKDMEEGKAAFSKDESKEPIVEVR
TEEERTPNHDGGKHTEPNETTSLTEPEKGPVEAKSESQETETKPAPAEVKTVPNDATQTK
ENESKA |
NT seq |
2541 nt +upstreamnt +downstreamnt
atgctgcaaactaaggatctcatctggactttgtttttcctgggaactgcagtttctctg
caggtggatattgtccccagccaaggggagatcagcgttggagaatccaaattcttctta
tgccaagtggcaggagatgccaaagataaagacatctcctggttctcccccaatggagaa
aagctcaccccaaaccagcagcggatctccgtggtgtggaatgatgactcttcctccaca
ctcaccatctacaatgccaacattgacgatgccggcatctacaagtgtgtggtcactggc
gaggatggcagcgagtcagaggccacggtcaacgtgaagatcttccagaagctcatgttc
aagaatgcaccaaccccacaggagttcagggagggggaagatgccgtgatcgtgtgtgat
gtggtcagctccctccccccaaccatcatctggaaacacaaaggccgggatgtcatcctg
aaaaaagacgtccgattcatagtcctgtccaacaactacctgcagatccggggcatcaag
aaaacagatgagggcacttatcgctgcgagggcaggatcctggcacggggggagatcaac
ttcaaggacattcaggtcattgtgaatgtgccacccaccgtccaggccaggcagagcata
gtgaatgccaccgccaacctcggccagtccgtcaccctgatatgcgatgctgaaggcttc
ccagagcccaccatgagctggacaaaggacggggaacagatagagaatgaagaagatgac
aaatacgtcttcagcgatgacagttctgagctgaccatcaggaaggtggataagaatgac
gaggccgagtacgtgtgcatcgccgagaacaaggctggagagcaggatgcatccatccac
ctcaaagtctttgcaaaacccaaaatcacttatgtagagaaccagactgccatggaacta
gaggaacaagtcactcttacctgtgaagcctcaggagaccccattccctctatcacctgg
aggacttctacccgaaacatcagcagcgaagaaaagactctggatgggcacatggtggtg
cgcagccatgcccgcgtgtcatctctgaccctgaagagcatccagtacacagacgccgga
gaatacatctgcactgccagcaacaccatcggccaggactcccagtccatgtacctcgaa
gtgcaatatgccccaaagctgcagggccctgtggctgtctacacgtgggaggggaaccag
gtgaacatcacgtgcgaggtatttgcctaccccagcgccacaatttcatggttccgggat
ggccagctgctgccaagctccaattacagcaatatcaagatctacaacaccccctccgcc
agctacctggaggtgaccccagactctgaaaatgacttcggaaattacaactgtactgca
gtgaaccgcattggacaggagtctttggaattcatccttgtccaagcagacaccccatct
tcaccgtccatcgaccaggtggagccgtactctagcacagcacaggtgcagtttgatgaa
ccagaggccacaggtggcgtgcccatcctcaaatacaaggccgagtggagagcagtgggc
gaagaagtgtggcatttcaagtggtatgatgccaaggaggccaacatggagggcatcgtc
accatcgtgggcctgaagccggagacgacgtacgcggtgcggctggcggccctcaacggc
aaggggctgggggagatcagcacagcctctgagttcaagacgcagccagtccgggaaccc
agtgcacctaaactcgaagggcagatgggagaggatggaaactctattaaggtgaatctg
atcaaacaggatgacggcggctcccccatcaggcactacctggtcaagtaccgagcgctc
tcctcggagtggaaaccggagatccggctcccatccggcagtgaccacgtcatgctcaag
tccctggactggaatgctgaatatgaagtctacgtggtggctgagaaccagcagggaaag
tccaaggcggctcattttgtgttcaggacctcggcccagcccacggccatcccagccaac
ggcagccctacatcaggcctgagcactggggccattgtgggcatcctcatcgtcatcttt
gtcctgctactggtggtggtggacatcacctgctacttcctgaacaagtgcgggctgctc
atgtgcattgccgtcaacctgtgcggaaaggctgggcccggagccaagggcaaggacatg
gaggagggcaaagccgccttctcgaaagatgagtccaaggaacccatcgtggaagtgcgg
accgaggaggagcggaccccaaaccacgatggagggaaacacacggagcccaacgagacc
acctcgctgacggagcccgagaagggccccgtagaagcaaagtcggagagccaggagaca
gaaacgaaaccagcgccagccgaagtcaagacggtccccaatgacgccacacagacaaag
gagaacgagagcaaagcatga |