Eleginops maclovinus (Patagonian blennie): 134870120
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Entry
134870120 CDS
T09869
Symbol
amotl2a
Name
(RefSeq) angiomotin-like 2a isoform X1
KO
K06104
angiomotin like
Organism
emac
Eleginops maclovinus (Patagonian blennie)
Pathway
emac04530
Tight junction
Brite
KEGG Orthology (KO) [BR:
emac00001
]
09140 Cellular Processes
09144 Cellular community - eukaryotes
04530 Tight junction
134870120 (amotl2a)
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Gene cluster
GFIT
Motif
Pfam:
Angiomotin_C
Golgin_A5
Motif
Other DBs
NCBI-GeneID:
134870120
NCBI-ProteinID:
XP_063748220
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Position
9:complement(1600107..1609493)
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AA seq
704 aa
AA seq
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MKTAEGSSGTVLHRLIQEQLRYGNLTDTRTLLAIQQQALRGGSSSGGGGHGSPRSSLESL
TQEETQYIHMSTRQDPQGQEHQGDLLHSESQMCHLYQLHGEELPTYEEAKAHSQYLISQK
GQAGQNLDIMGGRSEAQWDLKREHTRSLSERLMQLSLERTAPQHSLSSSHSYPQLYHDNI
TNTVAADRQGAQQYADQRGPPPDYPLFARIPGYMLSHSQEHGQYYREPPPPFYSQHHSRY
VSAQSQVAHSPPTAPGENLSQTEVLMRENERLRKELEVYSEKAVRLQKLELEIQRISEAY
ETLMKGSAKREALEKTMRNKLEAEIKRMHDFNRDLRDQLDSAIKQRSAKEAECSDQRHHV
FVKLLEQNEEQQREREQLERQIQHLRVSGEECQRRGELLEQALVSTQARNRQLEEELQRK
RAYVEKVERLQGSLAQLQAACEKREALELRLRTRLEQELKSLRAQQSHRQAADPMASELS
SSMLQQQLREREERVLALEADLTRWEQKYLEESTMRQFAMDAAATAAAQRDTTIIKHSPR
QSPNSSFNEDLPSSSHRQQEMENRIRALHAQLLEKDAVIKVIQQRSSWEQGQLERQGLRL
TRSVPSINNLTSSTAINGKNLSDDQTGAALLKPQPRMGPPRARSRDCSTQSDEAPLEPEL
TAEPCELKTSEVISAATPVDTTEKPLKTCERISSSDAKVVEILI
NT seq
2115 nt
NT seq
+upstream
nt +downstream
nt
atgaaaactgctgaaggctcctccggaacggtcctgcaccgtctgatccaggagcagctg
cgctacgggaatctaacggacacccgcacgcttctggccatccagcagcaggccctgcgt
ggaggcagcagcagcggcgggggggggcacggtagtccccgctcctctctggagagcctg
acacaggaggagacccagtacatccatatgtccacgcgacaggatcctcagggacaggag
caccagggggacctcctgcactccgagagccagatgtgccatctgtaccagctgcatgga
gaggagctgcccacatatgaggaggccaaagcacactcccagtacctgatctcccagaag
gggcaggccgggcagaacttggacataatggggggtcgcagtgaggctcagtgggatttg
aagagggagcatactcgctccctcagtgagaggctcatgcagctctctctggagaggaca
gctcctcagcacagcctgagctcttcccacagctacccacagctgtatcatgataatatt
acaaacactgtggcagctgacagacagggggcccaacaatatgcagatcagcgtggcccc
cctccggactaccctctgtttgctaggattcccggatacatgctcagccactcacaggag
cacggacagtactacagagaaccccccccaccgttctactcacagcaccacagcaggtat
gtgtccgctcagtcacaggtggctcacagcccccccacagcccctggtgagaacttgtct
cagactgaagtgttgatgcgagagaacgagcgactcaggaaggagctggaggtctacagc
gagaaggccgtccggctgcagaagttggagttggagattcaaaggatatcagaagcatac
gagaccctaatgaaaggctctgccaagcgggaggctctggagaaaacaatgaggaataaa
ctggaggctgagattaagaggatgcacgacttcaacagagacctgagagatcagcttgat
tcagctatcaaacagcggtcagctaaggaggccgagtgttccgaccagaggcaccatgtc
tttgttaaactgctcgagcaaaatgaagagcagcagcgggagcgagaacagctggaaagg
cagatacagcacctgcgtgtctccggggaggagtgccagcggaggggggagctgctggag
caggctctggtctccacacaggcccgcaaccggcagctggaggaggagctgcagaggaag
agagcatatgtggagaaggtggagcgactgcagggatcgctggctcagctgcaggcggcc
tgcgagaagagagaggcgctggagctgcggctgcgcacacggctggagcaggagctgaag
agcctcagggcccaacagtctcataggcaggcagctgaccccatggcttcagagctgagc
tcctccatgctgcagcagcagctgagggagagagaagagcgtgttctggccctggaagca
gacctcaccaggtgggagcagaagtacctggaggagagcaccatgaggcagtttgccatg
gacgcagctgccactgctgctgcacaaagagataccaccatcatcaaacattcacctcga
cagtcaccaaacagcagttttaatgaagacctgccttcatctagtcacagacaacaggag
atggagaacaggatccgtgcgcttcatgctcaactcctggagaaggacgctgtgatcaaa
gtcattcagcagcgttccagctgggagcagggccaactggagagacaggggctacgtctc
accaggtccgtcccctctatcaacaatttgaccagcagcacggcgattaacggaaagaac
ctctcagatgaccagacaggtgctgctctgctgaaaccccaaccccgcatgggtccgccc
agggcccggagcagggactgcagcacccaaagtgacgaggcccctctggagcctgagctc
accgcagagccatgcgagctaaagacgtctgaagtgatctcagcagctacacctgtagac
accacagagaagccactcaagacatgtgagaggatcagcagctcagacgcaaaggtggtt
gaaatcctcatttga
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