Mercurialis annua (annual mercury): 126667837
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Entry
126667837 CDS
T10153
Name
(RefSeq) trifunctional UDP-glucose 4,6-dehydratase/UDP-4-keto-6-deoxy-D-glucose 3,5-epimerase/UDP-4-keto-L-rhamnose-reductase RHM1
KO
K12450
UDP-glucose 4,6-dehydratase [EC:
4.2.1.76
]
Organism
mean Mercurialis annua (annual mercury)
Pathway
mean00541
Biosynthesis of various nucleotide sugars
mean01100
Metabolic pathways
mean01250
Biosynthesis of nucleotide sugars
Module
mean_M01021
UDP-L-Rha biosynthesis, UDP-Glc => UDP-L-Rha
Brite
KEGG Orthology (KO) [BR:
mean00001
]
09100 Metabolism
09107 Glycan biosynthesis and metabolism
00541 Biosynthesis of various nucleotide sugars
126667837
Enzymes [BR:
mean01000
]
4. Lyases
4.2 Carbon-oxygen lyases
4.2.1 Hydro-lyases
4.2.1.76 UDP-glucose 4,6-dehydratase
126667837
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GFIT
Motif
Pfam:
GDP_Man_Dehyd
Epimerase
RmlD_sub_bind
Polysacc_synt_2
3Beta_HSD
NAD_binding_4
Motif
Other DBs
NCBI-GeneID:
126667837
NCBI-ProteinID:
XP_050216884
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Position
LG2:41882576..41886038
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AA seq
671 aa
AA seq
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MANYKPKNILITGAAGFIASHVCNRLIRNYPDYKIVVLDKLDYCSNLKNLLPSKSSPNFK
FVKGDIGSADLVNFLLITESIDTIMHFAAQTHVDNSFGNSFEFTKNNIYGTHVLLEACKV
TGQITRFIHVSTDEVYGETDEDAVVGNHEASQLLPTNPYSATKAGAEMLVMAYGRSYGLP
VITTRGNNVYGPNQFPEKLIPKFILLAMQGKPLPIHGDGSNVRSYLYCEDVAEAFEVILH
KGEVGHVYNIGTKRERRVIDVAQDICKIFSRDTETSIKFVENRPFNDQRYFLDDEKLKIL
GWSERTIWEEGLKKTMDWYIKNPDWWGDVTGALLPHPRMLMMPGGRHFDGSEDGKSVSYA
SSNTNQNRMVIPVAKTGNVGSPRKSSFKFLIYGRTGWIGGVLGQLCDKQGIPYEYGKGRL
EDRSSLLADIQNVKPTHVFNAAGVTGRPNVDWCESHKTETIRTNVSGTLTLADICRDHNL
LMMNFATGCIFEYDAAHPEGSGIGYTEDDKPNFIGSFYSKTKAMVEELLKEYDNVCTLRV
RMPISSDLNNPRNFITKISRYNKVVNIPNSMTVLDELLPISIEMAKRNLRGIWNFTNPGV
VSHNEILEMYKSYIDPNFKWANFTLEEQAKVIIAPRSNNEMDASKLKKEFPELLSIKESL
VKYVFEHNKKT
NT seq
2016 nt
NT seq
+upstream
nt +downstream
nt
atggctaattataagccgaagaacatcctcattacgggggctgcagggtttattgcttcc
catgtttgcaatcggcttatccgtaactaccctgactacaagattgttgtccttgacaag
cttgattactgttcaaatctgaaaaacctcctaccctctaaatcatctcccaactttaag
tttgtaaagggcgacattggtagcgctgaccttgtcaacttccttctcatcactgagtct
attgacactattatgcactttgctgcccagactcatgttgataactcctttggtaacagc
tttgagtttacgaagaacaatatttatggtacccatgtgcttttagaagcctgcaaggtc
actggccagattacgcggttcattcatgtgagtacagatgaagtctatggggaaacggat
gaggatgctgttgtaggaaaccatgaggcttctcaactccttccaacaaacccttactct
gcaacaaaggccggtgcagaaatgcttgttatggcttatgggaggtcgtacgggttgcct
gtgatcacaacccgtggaaacaatgtctatggtcctaatcagtttcctgaaaaattaatt
cccaagtttatcctcttggccatgcaaggaaagcctctcccaatccacggagatggttcc
aatgtgaggagttatttgtactgtgaggacgttgccgaggcttttgaagttatccttcac
aagggggaggtagggcatgtttacaacattggcacaaagagggaaagaagagtgattgat
gttgctcaggatatctgtaagattttttcaagggataccgagacgagcatcaagtttgta
gagaacaggccattcaatgaccagaggtactttcttgatgacgagaagctgaagatctta
ggctggtctgaacgtactatttgggaggaggggctgaagaagactatggattggtacatt
aaaaatcctgattggtggggtgatgtaactggagctttgcttcctcatcctagaatgttg
atgatgcccggtggtagacactttgatgggtctgaagatggcaaatccgtgtcctatgct
tcaagcaatacgaatcagaacagaatggtcatcccagttgctaaaactggcaatgtgggc
tctcctcgaaaatcttcttttaagttcttgatatacggcaggactggatggattggtggc
gtgcttggacagttgtgtgacaaacaagggattccgtacgaatatggaaaaggacgactg
gaagatagatcatcccttttggctgacattcagaatgttaagccaactcatgtgtttaat
gctgctggtgtcactggcagacctaatgtcgattggtgtgaatcacacaaaacagaaacc
attcgcactaatgtttctggaaccttaacattagccgacatttgcagagaccataatctc
ttgatgatgaattttgccacgggctgtatattcgagtatgatgctgctcatcccgagggt
tctggcattggatatactgaagatgacaagcccaattttattggttctttctactcaaag
accaaggccatggtggaagagcttctaaaggaatacgataatgtatgcacactgagagtg
agaatgccgatatcatcagacctcaacaacccacgtaatttcattactaagatttctcga
tataacaaagtggttaacattccaaacagcatgactgtgttggatgaacttctacctatt
tcaatcgagatggcgaagaggaacttgaggggaatttggaacttcacaaaccccggtgtg
gtgagccataatgagattttggagatgtacaagagttatatcgaccccaacttcaagtgg
gcaaacttcacattagaggaacaagcaaaggtgatcattgcaccacgaagcaacaatgag
atggatgcgtccaagctgaagaaagaattcccggagttgctgtcgatcaaggagtctttg
gtcaaatatgtgtttgaacacaacaagaaaacttaa
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