Mercurialis annua (annual mercury): 126680878
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Entry
126680878 CDS
T10153
Name
(RefSeq) UDP-N-acetylglucosamine diphosphorylase 1-like
KO
K00972
UDP-N-acetylglucosamine/UDP-N-acetylgalactosamine diphosphorylase [EC:
2.7.7.23
2.7.7.83
]
Organism
mean Mercurialis annua (annual mercury)
Pathway
mean00520
Amino sugar and nucleotide sugar metabolism
mean01100
Metabolic pathways
mean01250
Biosynthesis of nucleotide sugars
Module
mean_M00892
UDP-N-acetyl-D-glucosamine biosynthesis, eukaryotes, glucose => UDP-GlcNAc
Brite
Enzymes [BR:
mean01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.7 Nucleotidyltransferases
2.7.7.23 UDP-N-acetylglucosamine diphosphorylase
126680878
2.7.7.83 UDP-N-acetylgalactosamine diphosphorylase
126680878
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NCBI-GeneID:
126680878
NCBI-ProteinID:
XP_050232094
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Position
LG5:complement(15618764..15626816)
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AA seq
491 aa
AA seq
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MREAIETNSASSLSPSQPPPQALLERLKDYGQEDVFTLWDELSLEERDFLVRDIENLDLP
RLDRIIRCSLHSQGLPVAAIEPVPEGSVSTLEERTMEDKERWWKMGLKAISNGKLAVLLL
SGGQGTRLGSSDPKGCFNIGLPSGKSLFQLQAERILCVQRLAAQAASEGSGGTASIHWYI
MTSPFTDEATRKYFESHKFFGLDSDQVTFFQQGTIPSVSKDGRFIMETPYKVAKSPDGNG
GVYTALKYSKLLEDMATRGIKYVDCYGVDNALVRVADPTFLGYFIDKGAASAAKVVRKAY
PQEKVGVFVRRGKGGPLTVVEYSELDQSLASAINQQTGRLRFCWSNVCLHMFTLDFLNQV
VNALEKDSIYHLAEKKIPSIHGFTSGYKLEQFIFDAFPYAPSTALFEVLREEEFAPVKNA
NGSNFDTPDSARLLVLRLHARWVVAAGGFLTHSVPLYATGVEVSPVCSYVGENLEAICRG
RTFHAPCEISF
NT seq
1476 nt
NT seq
+upstream
nt +downstream
nt
atgagagaagcaattgaaactaacagtgcctcttcactatcaccatcacagccacctcct
caagctttacttgaaagacttaaggattacggccaagaagacgtttttaccctttgggat
gagctctctcttgaagaacgtgacttccttgtcagggacattgagaatttagatctcccc
aggctagatcgaataattcgatgttcgctccattctcaaggattgccggtggcggctata
gagccggtgccggagggaagcgtgtcaacgctggaggaaagaacaatggaagataaagag
agatggtggaaaatgggattgaaagctatctctaatggaaaattagctgttttgctttta
tctggtggccaaggaacaaggctgggaagttcagatccaaaaggatgttttaatattgga
cttccatctggaaagtccctttttcaacttcaagccgagcgaattttatgcgtccaaaga
ctagctgcccaagctgccagtgagggatctggtggtacagcgtcaatacattggtacatt
atgaccagtccatttactgatgaggccacgcgcaaatattttgagagccacaagtttttt
ggtcttgattctgatcaagttaccttctttcagcaaggcactatacctagtgtctcaaag
gatggcagatttatcatggagactccatataaagtagctaaatctcctgatggaaatgga
ggagtatacacagctctgaagtattcaaaattattagaagatatggccacaagagggatt
aaatacgttgattgctatggtgtcgacaacgcattggttcgtgtagctgatccgaccttt
ttaggctattttattgataaaggtgctgcttctgctgcaaaggttgtacgcaaggcgtat
ccccaagaaaaggttggcgtatttgtgaggcgaggtaaaggaggacctcttactgttgtt
gaatacagtgagttggaccagtcactagcttcagcaatcaatcaacaaactggacgtctt
cgtttttgttggagtaatgtgtgtttacacatgttcactttggattttctaaatcaagtg
gtaaatgctcttgagaaagacagcatttaccatctagcagagaaaaaaattccatcaatt
catggatttacatcgggatataaactagagcagttcatatttgatgcatttccatatgca
ccttcaactgctctttttgaggtgttacgtgaagaagagtttgcaccagtgaaaaatgcc
aatggctcaaactttgacactccggacagtgctcggttgcttgtgctgcggctccatgct
cgttgggtcgttgctgctggcggttttttaacacattcagtgcccctatatgcaactggt
gtggaagtatctccggtttgctcatatgttggagaaaacttagaagctatatgccgaggt
agaacatttcatgcaccttgcgagatttcattttag
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