Chitinibacter mangrovi: ABHF33_07870
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Entry
ABHF33_07870 CDS
T11125
Symbol
glmU
Name
(GenBank) bifunctional UDP-N-acetylglucosamine diphosphorylase/glucosamine-1-phosphate N-acetyltransferase GlmU
KO
K04042
bifunctional UDP-N-acetylglucosamine pyrophosphorylase / glucosamine-1-phosphate N-acetyltransferase [EC:
2.7.7.23
2.3.1.157
]
Organism
cmav Chitinibacter mangrovi
Pathway
cmav00520
Amino sugar and nucleotide sugar metabolism
cmav00541
Biosynthesis of various nucleotide sugars
cmav01100
Metabolic pathways
cmav01250
Biosynthesis of nucleotide sugars
Module
cmav_M00909
UDP-GlcNAc biosynthesis, prokaryotes, Fru-6P => UDP-GlcNAc
cmav_M00995
UDP-MurNAc biosynthesis, Fru-6P => UDP-MurNAc
Brite
KEGG Orthology (KO) [BR:
cmav00001
]
09100 Metabolism
09107 Glycan biosynthesis and metabolism
00520 Amino sugar and nucleotide sugar metabolism
ABHF33_07870 (glmU)
00541 Biosynthesis of various nucleotide sugars
ABHF33_07870 (glmU)
Enzymes [BR:
cmav01000
]
2. Transferases
2.3 Acyltransferases
2.3.1 Transferring groups other than aminoacyl groups
2.3.1.157 glucosamine-1-phosphate N-acetyltransferase
ABHF33_07870 (glmU)
2.7 Transferring phosphorus-containing groups
2.7.7 Nucleotidyltransferases
2.7.7.23 UDP-N-acetylglucosamine diphosphorylase
ABHF33_07870 (glmU)
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
Hexapep
NTP_transf_3
LbH_EIF2B
NTP_transferase
Hexapep_2
IspD
GMPPB_C
DUF4954
CTP_transf_3
Motif
Other DBs
NCBI-ProteinID:
XBM02172
UniProt:
A0AAU7FDJ8
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All DBs
Position
complement(1659241..1660605)
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AA seq
454 aa
AA seq
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MSTVLDVVILAAGKGTRMYSSLPKVLHQLAGKPLVQHVIDTARGLKPAKLVVVYGFGGEK
LQQALAGQQLGFALQAEQLGTGHALAQAVPQLEGDTTLMLYGDVPLTRQATLEKLLTACA
GGKLGILTDILDDATGYGRIVRNADGQVTHIVEQKDCSAEEAAIREMNTGILVLPTARLK
GWLSELKNDNAQGEYYATDLIALAVRDGVEIATVHPQDHWEAEGINNKLQLAALERIHQQ
GIAKALLTAGVGLADPARIDVRGTIEHGQDVTIDVNCVFEGRIVLGQNVSIGAHCYLKNV
TIADGAVIHPFCHLEDAVVGAGSLIGPYARLRPGAELAADVHIGNFVEVKKSIIGQGSKV
NHLTYIGDTTIGTGVNVGAGTITANYDGVNKFRTIIEDNVRIGSNNVLVAPVTIGAGATT
GAGSVISKNAPAGELTVARAKQITITGWQRPTKK
NT seq
1365 nt
NT seq
+upstream
nt +downstream
nt
atgagcactgtactggatgttgttatcctcgcggctggtaaaggcacgcggatgtattca
agcctgcccaaggtattgcatcagttggcaggcaagccactggtacagcatgtgattgat
actgcgcggggtctgaaaccggcaaagctggtggttgtgtatggttttgggggtgaaaaa
ctgcagcaggctctggcagggcagcagcttggttttgccttgcaggccgaacagctgggg
actggtcatgcgctggcgcaggctgtgccgcagcttgaaggcgacaccacactgatgctg
tatggcgatgtgcccttaacccgccaagcgactttggagaaattactgaccgcctgtgcc
ggtgggaaattggggattctgaccgatattctggacgatgctaccggctatggccggatt
gttcgcaatgcagatggtcaggtgacccatattgtcgaacagaaagattgcagcgccgaa
gaagcggcaatccgtgaaatgaataccggtattctggtgttgcccaccgccagactgaaa
ggctggttgtccgagttgaaaaacgacaatgcgcaaggcgaatactacgctactgatctg
attgccctagcggtgcgtgatggcgtcgagattgccactgtgcatccgcaagaccactgg
gaggcggaggggatcaataataaattgcagttggctgctctggagcgaattcatcagcag
gggattgccaaggcgctactgaccgccggagtcggtctggccgacccagcgcggattgac
gttcgcggcacgattgaacatggtcaggatgtgacaatcgatgtgaattgcgtgtttgaa
ggccggattgtgctcggtcagaatgtcagcataggtgcgcattgctatctgaaaaatgtg
acgattgccgatggggcggtgattcatcctttttgccacctggaagatgctgtcgtaggc
gcaggtagcctgataggcccgtacgctcgcctgcgtccgggtgccgagctggctgctgac
gttcatattggcaattttgttgaggttaaaaaatcaatcattggccaaggtagcaaggta
aaccatctaacgtatattggcgatacaacaataggtacgggtgtcaatgtaggtgcaggc
acaattacggccaactatgatggcgtgaataaattccgcaccattattgaagacaatgtg
cgcatcggctcgaataatgtactggttgctccggtgacgataggtgcgggtgctactacc
ggggcaggttcggtcattagcaagaatgcgccagctggtgagctgacggtagccagagcc
aagcaaatcaccattaccgggtggcaacggccaactaaaaagtaa
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