Salmo salar (Atlantic salmon): 106586781
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Entry
106586781 CDS
T04363
Name
(RefSeq) alpha-1,3-mannosyl-glycoprotein 4-beta-N-acetylglucosaminyltransferase A-like
KO
K00738
alpha-1,3-mannosylglycoprotein beta-1,4-N-acetylglucosaminyltransferase A/B [EC:
2.4.1.145
]
Organism
sasa
Salmo salar (Atlantic salmon)
Pathway
sasa00510
N-Glycan biosynthesis
sasa00513
Various types of N-glycan biosynthesis
sasa01100
Metabolic pathways
Module
sasa_M00075
N-glycan biosynthesis, complex type
Brite
KEGG Orthology (KO) [BR:
sasa00001
]
09100 Metabolism
09107 Glycan biosynthesis and metabolism
00510 N-Glycan biosynthesis
106586781
00513 Various types of N-glycan biosynthesis
106586781
09180 Brite Hierarchies
09181 Protein families: metabolism
01003 Glycosyltransferases [BR:
sasa01003
]
106586781
Enzymes [BR:
sasa01000
]
2. Transferases
2.4 Glycosyltransferases
2.4.1 Hexosyltransferases
2.4.1.145 alpha-1,3-mannosyl-glycoprotein 4-beta-N-acetylglucosaminyltransferase
106586781
Glycosyltransferases [BR:
sasa01003
]
Glycan extension
N-Glycan
106586781
BRITE hierarchy
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
Glyco_transf_54
MGAT4A_C
TraL_transposon
DUF5798
Motif
Other DBs
NCBI-GeneID:
106586781
NCBI-ProteinID:
XP_014029874
UniProt:
A0A1S3PRL2
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Position
ssa25:38770896..38839662
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AA seq
563 aa
AA seq
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MRLRNGTVATAIIFFTSFLSLSWYTSWQNGKERLVAYQREFHALKERLRVAEHRTLQRSS
ELNNILEQFRRAIAETNSSKNALTNFSDETQKLLKELASRKPLQVPNIYHHLPHLLKNEG
SLHPAVHVGLGRTGVSMVMGIPTVKRKVKSYLAETLHSLINKLSPEERHDCVIIVFVGET
DTEYVQSVVTGLEKEFSTEFSSGLLEVISPPASYYPDLKDLKETFGDSRERVRWRTKQNL
DYSFLMMYAVSKGVYYVQLEDDIVAKPNYFATMKNFALQLSSEDWMILEFSQLGFIGKMF
QAPDLNLIVEFILMFYKEKPIDWLLDHILWVKVCNPEKDAKHCERQKSSLRVRFRPSLFQ
HVGLHSSLAGKIQKLTDKDFLKPLLHKIHVNPPAEVSTSLKVYQGHTLEKTYLGEDFFWA
INPTAGDYVLFKFDKPINIERFLFRSGNQEHPGDRIENTTVEILPFSVRRHHSDNAKTSF
RQCKDIIQTMQRQHSDNAKTTFRQCKDIIQTMQRQHSDNAKTTFRQHKHYIQQCENNIQT
TQRQHLDDTVCNNDNVNSQGTCF
NT seq
1692 nt
NT seq
+upstream
nt +downstream
nt
atgaggctcagaaatggaacggttgctactgcgataattttcttcacgtcgtttctcagc
ctgtcttggtacacatcctggcaaaatggcaaagagaggttggtagcgtaccagagggag
ttccatgccctgaaagagcgcctccgtgtggctgagcaccggaccctacaacgatcctca
gagctcaacaacatcctggagcaattcagacgggccattgcagagaccaacagcagcaag
aatgctctcaccaacttctcagatgagacccagaagctgctgaaggagctggccagtagg
aagcctctccaggtgccaaacatctaccaccacctgcctcacctgctcaaaaatgagggc
agcctgcaccccgctgtccatgtcggcctgggccgtaccggagtctccatggtgatgggt
attcctaccgtaaagcgtaaagtgaagtcgtacctggctgagacgctgcactcgctcatc
aacaagctctcacctgaggagagacatgactgtgtcatcatcgtctttgtaggagagacg
gacacagaatacgtccaaagcgtggtgaccggactggagaaagagttttctacagagttc
agttcaggcctgttggaggtgatctctcctcctgccagctactaccctgatctcaaagac
ctcaaagagaccttcggagactccagagagagggtcagatggcggaccaagcagaatctg
gactattccttcctcatgatgtatgctgtgagcaaaggagtctactatgtccagttggag
gatgacattgtggccaaaccaaactactttgccaccatgaagaactttgcgctacagctc
tcctctgaggactggatgatccttgagttctcccaactcggcttcatcggtaagatgttc
caggctccagatctcaacctcatagtagagtttatcctcatgttctataaggagaagccc
attgattggctactggaccacatcctctgggtcaaagtgtgtaacccagagaaagacgcg
aagcattgtgagaggcagaagtcgagtctgcgtgtgcggttcaggccctctctttttcaa
catgtggggctgcactcctctctggccggaaagatccagaaactcactgataaggacttc
ctgaagcccctgctccataagatccacgtgaacccgcctgctgaggtgtccacatctctc
aaggtgtaccagggccacactttggagaagacctacctgggagaagacttcttctgggct
atcaatcctactgctggagactacgtcctcttcaagtttgacaagcccatcaacatagag
aggttcctgttccgcagtgggaaccaggaacaccctggggacaggatagagaacaccact
gtagagatactgcccttctcggtaagacgacatcattcagacaatgcaaagacatcattc
agacaatgcaaagacatcattcagacaatgcaaagacaacattcagacaatgcaaagaca
acattcagacaatgcaaagacatcattcagacaatgcaaagacaacattcagacaatgca
aagacaacattcagacaacacaaacactacatacaacaatgcgaaaacaacattcagaca
acacaaagacaacatttggacgacacagtgtgcaataatgataatgtcaatagtcagggc
acttgtttctga
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