Panthera tigris altaica (Amur tiger): 102957463
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Entry
102957463 CDS
T02988
Symbol
AP3B2
Name
(RefSeq) adaptor related protein complex 3 beta 2 subunit
KO
K12397
AP-3 complex subunit beta
Organism
ptg
Panthera tigris altaica (Amur tiger)
Pathway
ptg04142
Lysosome
Brite
KEGG Orthology (KO) [BR:
ptg00001
]
09140 Cellular Processes
09141 Transport and catabolism
04142 Lysosome
102957463 (AP3B2)
09180 Brite Hierarchies
09182 Protein families: genetic information processing
04131 Membrane trafficking [BR:
ptg04131
]
102957463 (AP3B2)
Membrane trafficking [BR:
ptg04131
]
Endosome - Lysosome transport
Others
AP-3 complex
102957463 (AP3B2)
Endosome - Golgi transport
102957463 (AP3B2)
BRITE hierarchy
SSDB
Ortholog
Paralog
GFIT
Motif
Pfam:
Adaptin_N
AP3B1_C
AP3B1_C_2
Cnd1
HEAT_2
PDS5
Alpha_adaptinC2
Motif
Other DBs
NCBI-GeneID:
102957463
NCBI-ProteinID:
XP_007078335
LinkDB
All DBs
Position
Un
AA seq
897 aa
AA seq
DB search
MVLPSIGEFLFLRHDDLKEMLDTNKDSLQLEDPNQLIRASALRVLSSIRVPIIVPIMMLA
IKEAASDMSPYVRKTAAHAIPKLYSLDSDQKDQLIEVIEKLLADKTTLVAGSVVMAFEEV
CPERIDLIHKNYRKLCNLLIDVEEWGQVVIISMLTRYARTQFLSPTQNESLLEENPEKAF
YGSEEDEAKGPGSEEAATAGMFEPYLKSFYIRSTDPTQIKILKLEVLTNLANETNTPTVL
REFQTYIRSMDKDFVAATIQAIGRCATNIGRVRDTCLNGLVQLLSNRDELVVAESVVVIK
KLLQMQPAQHGEIIKHLAKLTDNIQVPMARASILWLIGEYCEHVPKIAPDVLRKMAKSFT
AEEDIVKLQIINLAAKLYLTNSKQTKLLTQYVLSLAKYDQNYDIRDRARFTRQLIVPSEQ
GGALRPLTLPPDRDHFQLGSLSHLLNAKATGYQELPDWPEEAPDPSVRNVEVPEWTKCSN
REKRKEKEKPFYSDSEGESGPTESADSDPESESASDSKSSSESGSGESSSESDSEDQEEE
KGRSSESEQSEEEGEKRKMKKRKKVPEGQGEGSSSEEDSDSSSGSSESERTSETEEEQVE
PASWRKKTPPSGKSAPVAKEISLLDLEDFTPPSVQPVSPPTIVSTSLATDLEGLTLTDSP
LVPSLLSPVVGVGRQELLHRVAGEGLAVDYTFSRQPFSGDPHMVSLHIHFSNSSDTPIKG
LHVGTPKLPAGISIQEFPEIESLAPGESVTAVMGINFCDSTQAANFQLCTQTRQFYVSIQ
PPVGELMAPMFMSENEFKKEQGKLTGMSEITEKLTLPDTCRNDHIVVQRVTAVANLGRVP
CGASDEYRFAGRTLTSGSLVLLTLDARPTGAAQLTVNSEKMVIGTMLVKDVVQALTQ
NT seq
2694 nt
NT seq
+upstream
nt +downstream
nt
atggttctcccttccattggtgagttcttgttcctaaggcacgatgacctgaaggagatg
ctggacaccaacaaagattccctccagctggaggaccccaaccagctgattcgggccagc
gccctccgcgtcctgtctagcatccgggtgcccatcattgtgcccatcatgatgctggcc
atcaaggaagctgcatcggacatgtcaccctatgtacggaaaacagctgctcacgccatc
cctaaactctacagtttggattcggaccagaaggaccagctgatcgaggtcattgagaaa
cttctggccgacaagaccacgctggtggcgggcagtgtggtgatggccttcgaggaggtc
tgccccgagcgcatcgacctgatacacaagaactaccggaagctctgtaacctgctcatc
gacgtggaggagtgggggcaggtggtcatcatcagcatgctcacccgctacgcgcgcacg
cagttcctgagccccacccagaacgaatctctgctggaggagaacccggagaaagccttc
tacggctcggaagaggacgaggccaagggcccgggctcggaggaggcggccaccgctggt
atgtttgagccctacctgaagagcttctacatcagatccaccgaccccacccagatcaag
atcctgaagctggaagtgttgaccaacctggccaatgagaccaacacccctactgtccta
cgggagttccagacgtacattcgcagcatggacaaggactttgtagcagccactatccag
gccattggacgctgtgcaaccaacatcggccgagtccgtgacacctgtctcaacggcctg
gtgcagctgctgtccaaccgcgacgagctggtggtcgcagagtcggtggttgtcattaag
aagctgctgcagatgcagcccgcgcagcacggagagatcatcaagcacctggccaagctc
acggacaacatccaggtgcccatggcccgggccagcatcctgtggctcatcggcgagtac
tgtgagcacgtccccaagatcgcgcctgacgtcctgagaaagatggccaagtccttcacg
gcagaggaggacatcgtcaagctgcagatcatcaacctggcagccaagctctacctgact
aactctaagcagaccaagctgctgacccagtatgtgctgagtctggccaagtacgaccag
aactatgacattcgtgaccgagcgcgcttcacccggcagctgatcgtcccctcggagcag
ggaggggccctcagacctctaaccctacccccagaccgggaccacttccagctgggctca
ctgtcccacctgctcaatgccaaggccacaggctaccaggagctcccagactggccagag
gaggctccagacccatctgtgcggaacgtggaggtaccagaatggaccaagtgctccaat
cgagagaagaggaaggagaaggagaaacccttctattctgactcagagggggagtcaggc
cccacagagtctgcagacagcgaccccgagtccgagagcgcctcggacagtaagagcagc
agtgagagcggctctggggagtccagcagtgagtctgatagtgaagaccaggaggaagag
aaggggaggagcagtgagagtgaacagagtgaggaggaaggtgagaagaggaagatgaag
aaaaggaagaaggtgcccgagggacagggagaaggttcatcctcagaggaggacagcgat
tccagcagtggctcatcagaatctgagagaacatcagagacggaggaggagcaggtggaa
cctgcctcttggaggaaaaaaacacctcccagtggcaaaagcgccccggtagccaaggag
atctccctgcttgacctagaggatttcacccctcccagtgtccagcctgtgtctcccccc
acgatcgtgtccaccagtctggctactgacctggagggcctgacgctcacagactccccg
ctggtgccctcactgctgagtccagtggtaggtgttgggaggcaggagctgctgcaccgt
gtagccggtgaggggctggccgtggactacaccttcagtcgccagcctttctctggggac
ccccacatggtatctctgcacatccacttctccaacagctctgatacccccatcaagggc
ctgcacgtgggcacccccaaactgcccgccggcatcagcatccaggagttccctgaaatc
gagtcactggcacctggagaatctgtcactgctgtaatgggcattaatttctgtgactca
acccaggcagccaacttccagctgtgtacccaaacccggcagttctacgtctccattcag
ccacccgttggggagctaatggctcccatgttcatgagcgagaatgagttcaagaaggaa
cagggaaagctgacaggcatgagcgagatcacagagaagctcacactgccagacacctgt
cggaatgaccacatcgtggtgcagagagtgactgccgttgccaacctgggtcgtgtccct
tgtggggcctctgatgagtacagatttgcggggaggacgctgaccagtgggagcctggtc
ctgctgaccctggacgcccggcccacgggagccgcccagctgaccgtcaacagtgagaag
atggtgatcggcaccatgctggtgaaggacgtggtgcaggctctgacccagtga
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