Entry
Name
(RefSeq) procollagen-lysine,2-oxoglutarate 5-dioxygenase 3 isoform X1
KO
Organism
onl Oreochromis niloticus (Nile tilapia)
Pathway
onl00514 Other types of O-glycan biosynthesis
Brite
KEGG Orthology (KO) [BR:onl00001 ]
09100 Metabolism
09105 Amino acid metabolism
00310 Lysine degradation
100697420
09107 Glycan biosynthesis and metabolism
00514 Other types of O-glycan biosynthesis
100697420
09180 Brite Hierarchies
09181 Protein families: metabolism
01003 Glycosyltransferases [BR:onl01003 ]
100697420
Enzymes [BR:onl01000 ]
1. Oxidoreductases
1.14 Acting on paired donors, with incorporation or reduction of molecular oxygen
1.14.11 With 2-oxoglutarate as one donor, and incorporation of one atom of oxygen into each donor
1.14.11.4 procollagen-lysine 5-dioxygenase
100697420
2. Transferases
2.4 Glycosyltransferases
2.4.1 Hexosyltransferases
2.4.1.50 procollagen galactosyltransferase
100697420
2.4.1.66 procollagen glucosyltransferase
100697420
Glycosyltransferases [BR:onl01003 ]
O-Glycan biosynthesis
O-linked Gal type
100697420
BRITE hierarchy
SSDB
Ortholog Paralog Gene cluster GFIT
Motif
Motif
Other DBs
LinkDB
All DBs
Position
LG3:75616451..75635192
Genome browser
AA seq
768 aa AA seq DB search
MSSCFLLCLLSLAFFQGAVWAEQRKLSPENLLVITVATEETDGYLRFMRTAREFNYTVKV
LGLGEEWKGGDVARTVGGGQKVRWLKKEVQKHSEKTELVIMFVDSYDVIFASGPEELLSK
FSRMGHKVIFSAEGFCWPDQRLASKYPEVRTGKRYLNSGGFIGYAPEISAIVQQWKYKDS
DDDQLFYTRIYLDKTHRTKFNMTLDHRSRIFQNLNGAVDEVVLKFERAKVRARNVAYDTL
PVVIHGNGPTKLQLNYLGNYVPTAWTYETGCGICDDDVLFFNEDEQMPLVYVAVFIEHAT
PFMEEFLERLSTLNYPKTRIRLFIHNNVVYHERHIQKFWERHRSLFPDARVVGPEENLKE
DEARTMAVEVCKKDPECDYYFSIDSDVALTNPDILRILIEENKSVIAPMLSKHGKLWSNF
WGALSPEGYYSRSEDYIEIVQGKRVGLWNVPYITQAYLLKGSMLRTKLSQVSLYMDEGGM
DADMVFCRSIRDQVTQTFSFFSCKHSQSGLQKSSFVSSNDVVSLNICPQGVFMYVSNRDE
FGRLVASSNFNTSRLHPDMWQIFDNPVDWKEKYVHENYSKIFEDEKKYVEQPCPDVYWFP
AFSDKMCDHMVETMEDHGEWSGGTHKDERLAGGYENVPTVDIHMNQIGFEKEWLKFLKDY
ISPVTEKLYPGYYPRAQAIMNFVVRYRPDEQPLLRPHHDSSTFTINIALNRKDIDYEGGG
CRFLRYDCKVESPRKGWSFMHPGRLTHYHEGLRVTKGTRYIMVSFVDP
NT seq
2307 nt NT seq +upstream nt +downstream nt
atgtcctcctgttttcttctctgcttgctgtctctcgcctttttccagggcgccgtgtgg
gccgaacagcggaagctttctccagaaaacttgctggtcatcaccgtggcaacagaggag
acggatggctacctgcgcttcatgaggacagccagagagttcaactacactgtgaaggtc
ctgggtctgggcgaggagtggaagggaggcgacgtggctcggacggtgggtggaggtcag
aaggtgagatggttgaagaaggaggtgcagaaacactcggagaagacggagctcgtcatc
atgtttgtggacagttacgatgtgatctttgcatcgggtcctgaggagctgctgtccaag
ttttcccgtatgggtcacaaagttattttctcagctgagggtttctgctggcctgaccag
cgcctggcctccaaataccctgaggtgcgtactgggaaacgctacctgaactcaggaggg
ttcatcggctatgctccagagatcagtgcaattgtccagcagtggaagtacaaagacagc
gatgacgaccaacttttctacaccaggatctacctggacaagacgcacaggaccaagttt
aacatgaccctggatcatcgatcccggatcttccaaaaccttaacggagctgttgatgag
gtcgtcttgaaatttgagagggcaaaggtcagagcaaggaacgtcgcctacgacacgctt
cctgttgttatccatggcaacggacccaccaagctgcagctgaactacctcggtaactac
gtccccacagcatggacctatgaaaccggctgtgggatctgcgacgatgacgtgctcttc
tttaacgaggatgaacagatgcctctggtctacgtcgctgttttcatcgaacacgcaact
cccttcatggaggagttcttggagcgcctgtccactctgaactacccaaaaacgaggatt
cgcctcttcatccacaacaacgtcgtgtaccacgagcgtcacatccagaagttctgggag
cgtcacaggtctctgttcccagacgcccgggttgtcggaccagaggagaacctgaaggag
gacgaagccagaaccatggctgtcgaggtgtgtaagaaggatccagagtgcgactactac
ttcagcatcgactccgatgtggctttgacgaaccccgacatcctgaggatcctgatagag
gagaacaagtctgtcatagcacccatgctgtccaaacacggaaagctgtggagtaacttc
tggggcgctctaagccctgaaggatactactccagatctgaagattacatcgagatcgtc
cagggcaagagggtaggtctgtggaatgtgccgtacatcactcaggcctacctgctcaaa
ggcagcatgctgcggactaaactgtcccaggtgagcctgtatatggacgaagggggcatg
gatgctgacatggtgttctgcaggagcattcgagaccaggtaacacagacgttctcattt
tttagctgtaagcacagtcagagtggattacaaaaaagttcttttgtaagcagtaatgat
gttgtttcattgaacatatgtccacagggagtcttcatgtatgtgtccaaccgtgacgaa
tttggccgtttggtggcctcgtccaatttcaacacgtccaggctccacccagacatgtgg
cagatctttgacaaccctgtggactggaaggagaagtatgtccacgaaaactactccaag
atctttgaagatgagaagaagtatgtagagcagccctgtccagatgtttactggtttcca
gctttctcagacaaaatgtgtgaccatatggtagaaaccatggaagaccatggcgagtgg
tctggtggaacgcacaaggatgagcgtctggctggcggttatgaaaatgtcccaactgtg
gatatccacatgaaccagatcggctttgagaaggagtggctcaagttcctcaaagattat
atttcccctgtcactgagaaactctatcctggctactaccccagggctcaagccattatg
aactttgtggtgcgttaccgtccagatgagcaaccgttattgcggccacatcatgactcc
tccaccttcactatcaacattgccctgaacaggaaggacattgactacgagggtggaggt
tgcaggttcctgcggtacgactgtaaggtggagtctcctaggaagggctggtccttcatg
cacccaggtcgactgacgcactaccacgaaggcctacgcgtcaccaaagggaccagatac
atcatggtgtcctttgtcgacccctaa