KEGG   Melitaea cinxia (Glanville fritillary): 123664041
Entry
123664041         CDS       T09237                                 
Name
(RefSeq) alpha-1,3/1,6-mannosyltransferase ALG2
  KO
K03843  alpha-1,3/alpha-1,6-mannosyltransferase [EC:2.4.1.132 2.4.1.257]
Organism
mcix  Melitaea cinxia (Glanville fritillary)
Pathway
mcix00510  N-Glycan biosynthesis
mcix00513  Various types of N-glycan biosynthesis
mcix01100  Metabolic pathways
Module
mcix_M00055  N-glycan precursor biosynthesis
Brite
KEGG Orthology (KO) [BR:mcix00001]
 09100 Metabolism
  09107 Glycan biosynthesis and metabolism
   00510 N-Glycan biosynthesis
    123664041
   00513 Various types of N-glycan biosynthesis
    123664041
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01003 Glycosyltransferases [BR:mcix01003]
    123664041
Enzymes [BR:mcix01000]
 2. Transferases
  2.4  Glycosyltransferases
   2.4.1  Hexosyltransferases
    2.4.1.132  GDP-Man:Man1GlcNAc2-PP-dolichol alpha-1,3-mannosyltransferase
     123664041
    2.4.1.257  GDP-Man:Man2GlcNAc2-PP-dolichol alpha-1,6-mannosyltransferase
     123664041
Glycosyltransferases [BR:mcix01003]
 N-Glycan biosynthesis
  Dol-linked oligosaccharide
   123664041
SSDB
Motif
Pfam: Glycos_transf_1 Glyco_trans_1_4 Glyco_transf_4 Glyco_trans_4_4 GT4-conflict Glyco_trans_1_2 BPTA
Other DBs
NCBI-GeneID: 123664041
NCBI-ProteinID: XP_045454619
LinkDB
Position
21:complement(9121978..9123777)
AA seq 421 aa
MVKIIFLHPDLGIGGAERLVLDAALAFKSKGHDVAFYTNHHDPTHCFAETKDGTFPVTVI
GDWIPRSIFGRFKAACAYTRMVFAAVYLAWYVIPVEEPTLIFCDLISLCIPFLKMARGPF
RIVFYCHHPDKLLTTEGGVLKKIYRAPLNWLEEFTTARADKVLVNSKYTARVYQDAFQKI
KDVPDICYPSINTEFFKRTIPKSLKEVVPVGTDKFVFLSINRYERKKNLKLALKALAELK
NIIDESDWERVHLIMAGGFDPINLENMEHFMELSDLAADLEIEDKVTFLKSPKDVEKVSL
LYNCKALIYTPSNEHFGIVPLEAMYYSKPVIAVNSGGPTETIVNDVTGFLCEPDSQSFAD
AMSTLIMNPELCGRLGEAGRKRFETKFSFEAFSNQLDGILTRERQLISEARAIEYEQRKT
K
NT seq 1266 nt   +upstreamnt  +downstreamnt
atggttaaaataatatttctccatccagacttaggtattggtggagctgagcgtttggtt
ttagatgccgcattggcgttcaaaagtaaaggccacgacgtcgctttttacacgaaccat
catgaccctactcattgcttcgccgaaaccaaagatggcacttttccagtgaccgtgatc
ggggattggattccacgctctattttcggcagatttaaggcagcatgcgcctacactcga
atggtattcgctgcggtatatttagcttggtatgttattccagtcgaagagccgacttta
atattttgtgacttaatatcattatgcattccgttcctaaaaatggcaagagggcctttt
agaattgtattttactgtcatcatccagataagcttttgacaactgaaggaggtgtgtta
aagaagatatacagagctccattgaattggttagaagaattcacaacggctcgtgccgat
aaagttttagtgaatagtaaatacacagctagagtataccaagatgcatttcagaaaata
aaagatgttcccgatatttgctatccatcaataaataccgagttcttcaagagaactata
ccaaaaagtttaaaggaagttgtgcctgttgggactgacaagtttgtttttttatctata
aacagatatgaaagaaaaaagaatttaaagctagccctgaaagcactcgcagagttaaaa
aatattattgatgagtctgactgggagagagttcatttgataatggctgggggttttgat
cctattaacttagaaaatatggaacattttatggaactcagtgacttagcggctgatctt
gaaatagaggataaagttacttttttgaaatctccaaaggatgtagaaaaagtgtcccta
ctttacaattgtaaggcattaatatatactccatcaaatgaacactttggaattgtgcca
ctagaagctatgtattacagtaaacctgtcattgctgtaaatagtggaggtcctacagag
acaattgtaaatgatgttacgggtttcctctgtgagccagacagtcagtcatttgctgat
gcaatgagcacattgattatgaatccggaattatgtgggagacttggtgaagcgggaagg
aaaagatttgaaaccaaattctcttttgaagccttttcaaatcaattagatggaatttta
acaagggagaggcaacttatctctgaggcaagagcaattgaatatgaacagaggaagact
aaataa

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