Entry
Name
(RefSeq) UDP-glucose 6-dehydrogenase-like
KO
Organism
xen Xenia sp. Carnegie-2017 (soft corals)
Pathway
xen00040 Pentose and glucuronate interconversions
xen00053 Ascorbate and aldarate metabolism
xen00520 Amino sugar and nucleotide sugar metabolism
xen00541 Biosynthesis of various nucleotide sugars
xen01250 Biosynthesis of nucleotide sugars
Module
xen_M00129 Ascorbate biosynthesis, animals, glucose-1P => ascorbate
Brite
KEGG Orthology (KO) [BR:xen00001 ]
09100 Metabolism
09101 Carbohydrate metabolism
00040 Pentose and glucuronate interconversions
124444123
00053 Ascorbate and aldarate metabolism
124444123
09107 Glycan biosynthesis and metabolism
00520 Amino sugar and nucleotide sugar metabolism
124444123
00541 Biosynthesis of various nucleotide sugars
124444123
Enzymes [BR:xen01000 ]
1. Oxidoreductases
1.1 Acting on the CH-OH group of donors
1.1.1 With NAD+ or NADP+ as acceptor
1.1.1.22 UDP-glucose 6-dehydrogenase
124444123
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SSDB
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Motif
Motif
Other DBs
LinkDB
All DBs
Position
Unknown
AA seq
486 aa AA seq DB search
MGTRQVVNKICCIGAGYVGGPTCAVIAYKCPEITVTVVDLSKSRIDAWNSSRLPIYEPGL
QEIVEQCRGKNLFYSTDIDKSIVEADLIFICVNTPTKTFGLGKGRAPDLKYIESAARHIS
KVATTHKIIVEKSTVPVRAAESISTILKANKQSGTLYEVLSNPEFLAEGTAINDLLHPDR
VLIGGEQTRGGQVAIDTLAWIYEHWIPENRVIKTNTWSSELSKLAANAFLAQRISSINAL
SAVCEATGADVAEVSNAIGKDSRIGSKFLQASVGFGGSCFQKDVLNLVYLCEALNLPEVA
AYWHQVVSMNEFQRRRFANKIIHALFNTVTDKKIGILGFSFKKNTGDTRESASIYICKYL
LEEGARVTIYDPKVEEEQVFTELCHPSISSDPEKVRKLVKIEKDAYRALENAHALVVCTE
WDEFKTLDYRHIYTNMLKPAFVFDGRMILDHDGLVDIGFQVETIGKVVKNSIPPVTPPIP
PNTFLS
NT seq
1461 nt NT seq +upstream nt +downstream nt
atgggtacgagacaggtagtaaataaaatatgttgtattggtgctggctatgttggtgga
cctacttgtgctgttattgcttacaaatgtcctgaaataacagtgactgttgttgatctc
agcaaatctagaattgacgcttggaattccagtagattacctatatacgagcccggcctt
caagaaatagttgaacaatgtcgtgggaagaatttattttattctacagatatagacaag
agcattgtcgaagccgacttgatttttatatgcgtgaatactccaacaaaaacatttggt
ctgggcaagggaagagctccagatttgaaatatatcgaatcagcagctcgacatatttca
aaagtggccacgacgcacaagatcattgttgagaaaagcactgttccagttagggcagca
gaaagcatatcaaccattttaaaagccaacaaacaatctggtacattgtatgaggtcctg
tcaaacccagaatttttggcagaaggcacagctattaatgatttattgcatcctgacaga
gtcttaataggtggtgagcaaacaagaggaggacaagttgcaatagatacactggcatgg
atttatgagcattggattcctgaaaatagagttatcaaaacaaacacatggtcttcagaa
ttatcaaaattggcagccaatgcatttcttgctcaaagaatttccagcataaatgcattg
agtgcagtatgtgaagccactggtgctgatgttgcagaagtttcaaatgccattggcaaa
gactctcgaattggaagcaaatttttacaagcatcagtgggttttggaggcagttgtttt
caaaaggatgttctcaacttggtgtacctatgcgaagccttaaatctccccgaggtggct
gcatactggcatcaggttgtctcaatgaacgagttccaaagacggcgatttgcaaataaa
ataattcatgcattgtttaatacggtcacggataaaaagattggaatattaggtttctca
tttaaaaagaatacaggtgataccagggagtcagcaagtatatacatttgcaaatacttg
ttggaagaaggagcaagagtgacaatctatgacccaaaagttgaggaagagcaagtcttc
acagaactctgccatccaagtatatcatcagatccagagaaagtgagaaaattggtgaaa
atagaaaaggatgcatacagagcactggaaaatgcacatgcattggttgtttgtactgaa
tgggatgaatttaagacattggactacaggcacatttatacaaatatgttgaaaccagct
tttgtttttgatggaagaatgatattggaccatgatggtcttgttgacattggctttcaa
gttgagacaattggtaaagttgtaaagaattcaataccccctgtaacacctccaatacca
ccaaatacattcttaagttag