Alosa sapidissima (American shad): 121694747
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Entry
121694747 CDS
T11137
Symbol
ganabb
Name
(RefSeq) neutral alpha-glucosidase AB isoform X1
KO
K05546
mannosyl-oligosaccharide alpha-1,3-glucosidase [EC:
3.2.1.207
]
Organism
asad Alosa sapidissima (American shad)
Pathway
asad00510
N-Glycan biosynthesis
asad01100
Metabolic pathways
asad04141
Protein processing in endoplasmic reticulum
Module
asad_M00073
N-glycan precursor trimming
Brite
KEGG Orthology (KO) [BR:
asad00001
]
09100 Metabolism
09107 Glycan biosynthesis and metabolism
00510 N-Glycan biosynthesis
121694747 (ganabb)
09120 Genetic Information Processing
09123 Folding, sorting and degradation
04141 Protein processing in endoplasmic reticulum
121694747 (ganabb)
Enzymes [BR:
asad01000
]
3. Hydrolases
3.2 Glycosylases
3.2.1 Glycosidases, i.e. enzymes that hydrolyse O- and S-glycosyl compounds
3.2.1.207 mannosyl-oligosaccharide alpha-1,3-glucosidase
121694747 (ganabb)
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Motif
Pfam:
Glyco_hydro_31_2nd
Gal_mutarotas_2
Glyco_hydro_31_3rd
Motif
Other DBs
NCBI-GeneID:
121694747
NCBI-ProteinID:
XP_041930988
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Position
20:7001825..7013089
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AA seq
936 aa
AA seq
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MAAFIERMGLLVLACVSLLVSGSLAVDRGNFKTCDQSAFCKRQRALKAGQSPYRALLDTL
ELSDSRVTLQLINDNNKVRLLLELYRLQGNMTRVKINELKPLRPRFEVPDVLVSDPPTEP
MSLLSQDDNGVVLSLGVQRQQRLIVSARPFRLDIVEGPEVLMSLNSRGLLAFEHLRMRKD
TQANPEGGEAKEEADGEEQQVEAKETAEEGVKEEEMDGMWEETFKSHTDGKPNGPTSISL
DFSLPGVEHVYGIPEHADTLKLKTTDGGDPYRLYNLDVFQYELFNPMALYGAVPVMLAHS
TARTMGLFWLNAAETWVDISSNTAGKTVFGKMLDYVQGASETPQTDVRWISESGIIDVFI
MLGPTPSDVFTQYASLTGTQSFPPIAALAYHQCRWNYNDQEDVQAVDKGFDEHDIPYDFI
WLDIEHADGKRYFTWDPHKFPTPKDMLQGIMDKRRKMVAIVDPHIKIDSNYKIHNEIRAQ
NFYVKNKDGGDYEGWCWPGSAGYPDFTNPQMRAWWASMFAYDQYEGSMENLYTWNDMNEP
SVFNGPEVTMHKDAKHGDWEHRDVHNLYGFYVQMATADGLIRRSGGVERPFVLTRAFFAG
SQRYGAVWTGDNAAEWDHLKISIPMCLSLGLVGISLCGADVGGFFKTPSAELLVRWYQTG
AYQPFFRAHAHLDTPRREPWLFGPENTALIREAVRQRYALLPYWYQQFYQAYRTGQPVMR
PLWVEYPKDTATFTMDDQFLIGKDLLVHPVTEEGSRGVTAYLPGHGEVWYDVHTFQKHNG
AQSLYIPVTMSSIPVFQRGGSIIPKKLRVRRSSSCMENDPYTLIVALSPQRTAEGELYID
DGHTFSFDTKKEFIHRSLTFANNVLSTRNLCPESQLSSPSWIEKVIILGASNPKGVNLKT
DGKVTPLDYEFDASMSVLTLRKPGVNVGADWTVELL
NT seq
2811 nt
NT seq
+upstream
nt +downstream
nt
atggctgccttcattgagagaatggggttgctggtcttggcctgtgtttcattgttggtg
agtggctctttggctgtggatcgaggaaacttcaaaacctgcgaccagagtgccttctgc
aaacgtcaacgggctctcaaggcaggccagtcgccgtacagagccctgctggacacgctg
gaactcagtgattccagggtcacactacagctcatcaatgacaacaacaaggtgcgtctt
ctgctggagctgtaccggctgcaaggcaacatgacgcgggtcaagatcaacgagctgaag
ccactcaggccccgctttgaggtgccggacgtgctggtgtccgacccacccactgagcct
atgtcgctgttgtctcaggatgataacggcgtggtgctgtccctgggcgtacagcggcag
cagaggctgattgtcagcgctcggcccttccggctggacatcgtggagggacccgaggtg
ctgatgtctctcaactcccggggcctcctggcctttgagcacctgcgcatgcgcaaggac
actcaggccaatcctgagggtggcgaggcgaaggaggaggcagatggagaagagcagcag
gtggaagcaaaggagaccgcagaagaaggtgttaaagaagaggagatggatggcatgtgg
gaggagacattcaagtcgcacactgacggcaaaccgaatgggccgacctccatcagtcta
gacttctctctgcccggagtagaacacgtctatggcattccagaacatgccgacactctc
aaattgaagaccacagacggtggggatccctataggttgtataatctggacgtgttccag
tacgagctgtttaaccccatggccctgtacggagctgtacccgtcatgctggcccatagt
acggcacgcaccatgggcctcttctggctaaacgctgcagagacctgggtggacattagc
tccaacaccgctggaaagaccgtgtttgggaagatgctggactacgttcagggcgccagt
gagacgccacagacggacgtgcgctggatctccgagagcggcatcatcgacgtcttcatc
atgcttggccccactccctctgacgtcttcacccagtacgcctccctgaccggcactcag
tctttcccccccatcgctgccctggcctaccaccagtgccgctggaactacaacgaccag
gaggacgtgcaggctgtggacaagggcttcgatgagcacgacatcccctacgacttcatc
tggctggacatcgagcacgccgacggcaagcgctacttcacctgggacccccacaagttc
cccacccccaaggacatgctgcagggcatcatggacaaacgccgcaagatggtggcaatc
gtagaccctcacatcaaaatagacagcaactacaaaatccacaacgagatccgggcccaa
aacttctatgtcaaaaacaaagatggaggagattatgaaggctggtgctggcctgggagt
gctggttatccagatttcaccaacccccaaatgcgggcctggtgggctagtatgtttgct
tatgaccaatacgagggttctatggagaacctgtacacatggaacgacatgaatgagcca
tctgttttcaatggaccagaggtcaccatgcataaggatgctaagcatggcgactgggag
caccgtgatgtccacaacctctacggcttctatgtgcaaatggctactgctgacggtttg
atccgccgctctgggggagttgagcgtccgttcgtcctcaccagggccttcttcgctggg
tctcagagatacggagcggtatggaccggtgacaacgcggcagagtgggaccacctgaag
atctccatccccatgtgcctcagtctgggcctggtgggcatctctctgtgtggagctgat
gtcgggggtttcttcaagacgcccagcgccgagctgttggttcgctggtaccagacgggt
gcctaccagcccttcttccgcgcccacgcccacctggacaccccccgccgtgagccctgg
ctcttcgggcccgagaacacggcactgatccgtgaggccgtgcgccagcgctacgccctc
ctgccctactggtaccagcagttctaccaggcctacaggaccggccagcccgtcatgaga
ccattgtgggtagagtatcccaaggacacagccacgttcaccatggatgaccagttcctt
attgggaaggacttgctggtgcaccctgtaactgaggagggctcccggggcgttacggcc
tatctgccaggacatggagaggtctggtacgatgtccacacattccagaaacacaacgga
gctcagagcctgtacattcctgttaccatgagttctattccagtattccaacgtggtggt
tccattattcccaaaaagctccgggtccggaggtcctcctcgtgcatggagaacgacccc
tatactcttattgtggctctgagtccccagaggactgcagagggagagctctacattgac
gatggccacaccttcagctttgacaccaagaaggagtttattcacaggagcctaaccttt
gccaacaacgtcctctccactaggaacctgtgccctgagagccagctctcctctccctcc
tggatcgagaaggtgatcattcttggggccagtaatcccaaaggggtcaaccttaagact
gatggtaaagtgactccactggactatgagtttgatgcctccatgtcggtgctgaccctc
cgtaagcctggcgtgaacgttggtgcagactggactgtggagctgctgtga
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