KEGG   Salmo salar (Atlantic salmon): 106612084
Entry
106612084         CDS       T04363                                 
Name
(RefSeq) neutral alpha-glucosidase AB-like
  KO
K05546  mannosyl-oligosaccharide alpha-1,3-glucosidase [EC:3.2.1.207]
Organism
sasa  Salmo salar (Atlantic salmon)
Pathway
sasa00510  N-Glycan biosynthesis
sasa01100  Metabolic pathways
sasa04141  Protein processing in endoplasmic reticulum
Module
sasa_M00073  N-glycan precursor trimming
Brite
KEGG Orthology (KO) [BR:sasa00001]
 09100 Metabolism
  09107 Glycan biosynthesis and metabolism
   00510 N-Glycan biosynthesis
    106612084
 09120 Genetic Information Processing
  09123 Folding, sorting and degradation
   04141 Protein processing in endoplasmic reticulum
    106612084
Enzymes [BR:sasa01000]
 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
     106612084
SSDB
Motif
Pfam: Glyco_hydro_31_2nd Gal_mutarotas_2 Glyco_hydro_31_3rd DUF5110
Other DBs
NCBI-GeneID: 106612084
NCBI-ProteinID: XP_014068396
UniProt: A0A1S3SVN0
LinkDB
Position
ssa09:77319558..77344298
AA seq 937 aa
MAAFVVSPLKMGPLLVLWLAVCLSGSWAVDRGNFKTCDQSAFCKRQRALKPGQSPYRALL
ETLELTNTKLTLQLINDNNKVRLLLELYRLQGNMTRVKINELKPLKPRFEVPDVLINDPP
TEPLSLLSRDENGVVLSLGADSQRLIVSAKPFRLDIMEGREVLLSLNSRGLLAFEHLRIR
KDTKVNPEGTENKEETEAANEPAEGEEKAKEDEKVEDGMWEETFKSHTDSKPNGPSSISL
DFSLPGVENVYGIPEHADSLKLKATDGGDPYRLFNLDVFQYEVFNPMALYGAIPVMLSHS
AQRTMGIFWLNAAETWVDISSNTAGKTVFGQMLDYVQGSSETPQTDVRWISESGIIDVFI
MLGPTPTDVFSQYASLTGTQAFPPLSALAYHQCRWNYNDQEDVAAVDQGFDDHDIPYDFI
WLDIEHTDGKRYFTWDPHKFPQPKDMLQGLLDKRRKMVTIVDPHIKVDSSYKIHNEIRSK
GFYVKSKDGGDYEGWCWPGNSGYPDFTNPEMRAWWASMFAYDQYEGSMENMYTWNDMNEP
SVFNGPEVTMHKDALHGNWENRDLHNLYGFYVQRATAEGLIERSGGVERPFVLARAFFAG
SQRYGAVWTGDNAAEWDHLKISIPMCLSLGLVGVSFCGADVGGFFKSPSTELLVRWYQTG
AYQPFFRAHAHLDTPRREPWLFGPENTALIREAVRQRYALLPYWYQLFYHAHHSGQPVMR
PLWVEYPQDTATFSMDDQFLLGRDLLVHPVTEEGARGVTAYLPGKGEVWFDVHTFQKHNG
AQNLYIPVTISSIPVFQRGGSIIPRKARVRRSSSCMEHDPYTLFVALSPKRFAQGELYID
DGHTFNFDKQKQFIHRRFSFANNALSSRNLAPGSQFTTFSWIEKIVILGASKPSKATLKT
PDGKESLLEFEFDASMSVLTLRKPGVNAGLDWTVVLQ
NT seq 2814 nt   +upstreamnt  +downstreamnt
atggccgccttcgtagtaagccctctcaagatggggcctctgttagtgttgtggctggct
gtctgcctcagtgggtcctgggcagtggaccgggggaacttcaaaacctgtgaccagagt
gcgttctgcaagcgtcagcgagcgttgaagcctggccagtccccatacagagcgctgctg
gagaccctggagctcaccaacaccaaactcacactgcagctcatcaatgacaacaacaag
gtgcgtctgctgcttgagctctatcgtctccagggcaacatgaccagggtgaagataaat
gaattgaagccactgaagcctcgttttgaggtccccgatgtgctcatcaatgaccctccc
acagagcctttgtcactcctgtctcgggatgagaacggggtggttctgtctttgggggca
gactctcagcggctgatcgtcagcgctaagccgttccgattggacatcatggaggggcgg
gaggttcttctgtcacttaactcccggggcctgctggccttcgagcacctccggattcgc
aaggatactaaggtaaacccagaaggaactgagaataaagaagaaactgaggctgccaac
gaaccggcagaaggagaggagaaggcgaaggaggatgagaaagtggaagatggaatgtgg
gaggagacattcaagtcgcacacagacagcaaacccaatggcccttcctccatcagtcta
gacttctctctgccaggggtggagaatgtctacggcatcccagaacacgcagacagcctc
aaactcaaagccactgatggaggggatccttaccggttgtttaacctagacgtgttccag
tatgaggtgttcaaccctatggccctgtacggtgccatccctgtcatgttgtctcacagt
gcacagcgcaccatgggcatcttctggctcaacgctgctgagacctgggtggacatcagc
tccaacactgccggcaagacagtgtttggccagatgctggactacgttcagggctccagt
gagacgccacagacagacgtgcgttggatctcagagagcggcatcatcgacgtcttcatc
atgctgggacccactcccactgatgtcttctcccagtacgcctcactcacaggtacccag
gccttccctcccctgtctgcgctggcctaccaccagtgccgctggaactacaacgaccag
gaggatgtggcggcggtggaccagggctttgacgaccacgacatcccctacgacttcatc
tggctggacatagagcacacggacggcaagcgctacttcacctgggaccctcacaagttc
ccccagcccaaagacatgctgcagggtctgttagacaagagacgcaagatggtgaccatt
gtggacccccacatcaaggtggacagcagctacaagatccacaatgagatccgctccaaa
ggcttctacgtcaaaagcaaagatggcggagactatgagggctggtgctggcctggtaat
tctggttacccagactttaccaaccctgagatgagagcttggtgggccagtatgtttgcc
tacgatcagtatgagggttccatggagaacatgtatacatggaacgatatgaacgagccg
tcagtgtttaatggaccagaggtcaccatgcataaagacgccctgcatgggaactgggag
aaccgtgacctccacaacctctacggattctacgtgcaaagggccacagcagagggtctg
attgagcgctcagggggagtggagagaccttttgtcctggccagagccttcttcgctggc
tcccagcgctatggtgctgtgtggacaggtgataacgctgctgagtgggaccatctgaag
atctccatccccatgtgtctcagtctgggcttggttggtgtctctttctgtggagctgat
gtgggtggcttcttcaagtctcccagtactgagctcctggtgcgttggtaccagacgggg
gcgtaccagccgttcttccgggcccatgcccatctggacaccccccgcagggagccctgg
ctgtttggccccgagaacactgctctgatcagggaggctgtccgccagcgctacgccctc
ctgccttactggtaccagttgttctaccacgcccaccactctggccagcccgtcatgaga
cccctgtgggtggagtatcctcaggatacagccacgttctccatggatgaccagttcctg
cttgggagagatctgctggtgcaccccgtgactgaggagggggctaggggtgttactgcc
tacctgcctggaaaaggagaggtctggtttgacgtccacacgttccagaaacacaacgga
gcccagaacctctacatccctgtcaccatcagctctattccggtattccagcgcggtggt
tccattattcccaggaaggcccgggttcgaaggtcatcatcatgcatggaacacgacccc
tataccttattcgttgctctcagccccaagcgatttgcccagggtgagctctacatagac
gacggccacaccttcaactttgacaaacagaaacagttcatccacagaagattttccttt
gccaataatgccctgtcctccaggaacctggcccctggctctcagttcaccactttttcc
tggattgagaagattgtcattttgggggccagtaagcccagcaaggccactctgaagact
cctgatggcaaggagagtctgctggagtttgagtttgatgcctccatgtcggtgttaacc
cttcgcaagccgggcgtcaacgcagggctggactggactgtggtgcttcagtaa

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