KEGG   Actinomadura parvosata subsp. kistnae: BKM31_02020
Entry
BKM31_02020       CDS       T04759                                 
Name
(GenBank) nucleotidyltransferase
  KO
K00963  UTP--glucose-1-phosphate uridylyltransferase [EC:2.7.7.9]
Organism
noa  Actinomadura parvosata subsp. kistnae
Pathway
noa00040  Pentose and glucuronate interconversions
noa00052  Galactose metabolism
noa00500  Starch and sucrose metabolism
noa00520  Amino sugar and nucleotide sugar metabolism
noa00541  O-Antigen nucleotide sugar biosynthesis
noa01100  Metabolic pathways
noa01110  Biosynthesis of secondary metabolites
noa01240  Biosynthesis of cofactors
noa01250  Biosynthesis of nucleotide sugars
Module
noa_M00549  Nucleotide sugar biosynthesis, glucose => UDP-glucose
noa_M00854  Glycogen biosynthesis, glucose-1P => glycogen/starch
Brite
KEGG Orthology (KO) [BR:noa00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00040 Pentose and glucuronate interconversions
    BKM31_02020
   00052 Galactose metabolism
    BKM31_02020
   00500 Starch and sucrose metabolism
    BKM31_02020
   00520 Amino sugar and nucleotide sugar metabolism
    BKM31_02020
  09107 Glycan biosynthesis and metabolism
   00541 O-Antigen nucleotide sugar biosynthesis
    BKM31_02020
Enzymes [BR:noa01000]
 2. Transferases
  2.7  Transferring phosphorus-containing groups
   2.7.7  Nucleotidyltransferases
    2.7.7.9  UTP---glucose-1-phosphate uridylyltransferase
     BKM31_02020
SSDB
Motif
Pfam: NTP_transferase NTP_transf_3 IspD CTP_transf_3
Other DBs
NCBI-ProteinID: AQZ60455
UniProt: A0A1U9ZR80
LinkDB
Position
complement(442270..443139)
AA seq 289 aa
MIRKAVIPVAGLGTRLLPLTKALPKEMLPIGDKPVIEHTIRELVDSGIDDITIVTSARKD
LVQRHFAPDADLERELRAAGKDDLAGAVAELSSLAHITYLYQRGPYGNGTPILNAARVIG
DEPFMVLWADDVFVAEVPRAQQLKAAYEATGAPVLALMPMAVEDASRYGVPIVEEDLGGG
RLRISGLVEKPRPEEAPSRYAAIGGYVVTPGVVAELEEATRRWHEHPEGEIYLTDALHRH
AAGNPVYGQVIDGTWWDTGSPLNYLRAQFAAALADPVYGPELRKLARES
NT seq 870 nt   +upstreamnt  +downstreamnt
atgatccgcaaggccgtgatcccggtggccgggctgggcacccggctgctgcccctgacg
aaggcgctgccgaaggagatgctgccgatcggcgacaagccggtcatcgagcacacgatc
cgggagctggtggactccggcatcgacgacatcacgatcgtcacctcggcccgcaaggac
ctcgtccagcgccacttcgcccctgacgcggacctggagcgggagctgcgcgcggccggc
aaggacgacctggccggcgcggtggcggagctgtcgtcgctggcccacatcacgtacctg
taccagcgcggcccgtacggcaacggcacgccgatcctgaacgccgcgcgggtgatcggc
gacgagccgttcatggtgttgtgggccgacgacgtgttcgtggcggaggtgccgcgcgcg
cagcagctgaaggcggcctacgaggcgacgggcgcgccggtgctggccctgatgccgatg
gcggtggaggacgcctcccgctacggcgtgccgatcgtcgaggaggacctcggcgggggc
cgcctgcgcatctcggggctggtggagaagccgcgcccggaggaggccccctcgcggtac
gccgcgatcggcgggtacgtcgtcaccccgggggtcgtcgccgagctggaggaggccacg
cgccgctggcacgagcaccccgagggcgagatctacctgaccgacgccctgcaccgccac
gccgcgggcaacccggtgtacgggcaggtcatcgacggcacctggtgggacaccggctcg
ccgctcaactacctgcgggcgcagttcgccgcggcgctggccgatccggtgtacgggccg
gagctgcgcaaactggcccgggagagctag

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