Enterobacter adelaidei: AAHF05_05105
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Entry
AAHF05_05105 CDS
T10740
Symbol
ushA
Name
(GenBank) bifunctional UDP-sugar hydrolase/5'-nucleotidase UshA
KO
K11751
5'-nucleotidase / UDP-sugar diphosphatase [EC:
3.1.3.5
3.6.1.45
]
Organism
eax Enterobacter adelaidei
Pathway
eax00230
Purine metabolism
eax00240
Pyrimidine metabolism
eax00760
Nicotinate and nicotinamide metabolism
eax01100
Metabolic pathways
eax01110
Biosynthesis of secondary metabolites
eax01232
Nucleotide metabolism
Brite
KEGG Orthology (KO) [BR:
eax00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
AAHF05_05105 (ushA)
00240 Pyrimidine metabolism
AAHF05_05105 (ushA)
09108 Metabolism of cofactors and vitamins
00760 Nicotinate and nicotinamide metabolism
AAHF05_05105 (ushA)
Enzymes [BR:
eax01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.5 5'-nucleotidase
AAHF05_05105 (ushA)
3.6 Acting on acid anhydrides
3.6.1 In phosphorus-containing anhydrides
3.6.1.45 UDP-sugar diphosphatase
AAHF05_05105 (ushA)
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Gene cluster
GFIT
Motif
Pfam:
5_nucleotid_C
Metallophos
Motif
Other DBs
NCBI-ProteinID:
XGV92422
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Position
1051607..1053259
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AA seq
550 aa
AA seq
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MKLMKRGVALALIAAWGLVSLPAQAYEKDKTYKITILHTNDHHGHFWRSEYGEYGLAAQK
TLVDGIRKEVAAQGGSVLLLSGGDINTGVPESDLQDAEPDFRGMNLIGYDAMAVGNHEFD
NPLTVLRQQEKLAKFPFLSANIYQKSTGERLFKPWALFKRQDLKIAVIGLTTDDTAKIGN
PEFFTDIEFRKPADEAKLVIQELQQNEKPDVIIATTHMGHYDNGEHGSNAPGDVEMARSL
PAGSLAMIVGGHSQDPVCMASENKKQVDYVPGTPCAPDRQNGIWIVQAHEWGKYVGRADF
EFRNGEMKLVHYQLIPVNLKKKVTYPDGKSERVLYTPEIAENQQMLSLLTPFQNKGKAQL
DVKIGTLNGRLEGDRSKVRFVQTNMGHLVLAAQMARTGADFGVMSGGGIRDSIEGGNITY
KDVLKVQPFGNVVVYADMSGKEVIDYLTAVAQMKPDSGAYPQFANVSFVAKDGKLNDLKI
KGEPVDPAKTYRLATLSFNATGGDGYPHIDNKPGYVNTGFIDAEVLKQFIEQNSPIDVNA
YEPKGEVSWQ
NT seq
1653 nt
NT seq
+upstream
nt +downstream
nt
atgaagttaatgaagcggggcgtcgcgctggcgcttatcgccgcatggggcctggtaagc
ctgcccgcgcaggcatacgaaaaagataaaacctacaaaatcaccattctgcataccaac
gatcaccacgggcatttctggcgcagtgaatacggcgaatatggtctggcggcgcaaaaa
acgctggtggatggtattcgtaaagaggtggcggctcagggcggcagcgtgctgttgctg
tccgggggagatatcaacaccggggtaccggaatccgatttacaggatgccgagcccgat
tttcgcggtatgaatctgattggttacgatgcgatggccgtcggtaaccacgagtttgat
aatccactaacggtactgcgccagcaggaaaaactggcaaaattcccgttcctctcagcc
aatatttatcagaaaagcaccggtgaacgcctgtttaaaccgtgggcgttgtttaagcgt
caggatcttaaaatcgccgtcatcgggttaacgactgacgatacagcgaaaattggcaat
cctgagttctttaccgatatcgaattccgtaaaccggcagacgaagcaaagctggttatt
caggaattacagcagaacgaaaagccggatgtgattattgccaccacccacatggggcac
tatgacaatggtgaacacggctctaatgcgccaggtgacgtggagatggcgcgcagcctg
ccggctggctcgctggcaatgattgtgggcggtcactcacaggatccggtctgcatggcc
tccgagaataaaaagcaggttgattacgtgccaggcacgccgtgtgccccagaccgtcag
aacggcatctggattgtgcaggcgcatgagtggggcaaatacgtaggccgggcggatttt
gagttccgtaacggcgagatgaaactggtgcattaccagctcatcccggtcaacctgaag
aagaaagtcacttatcctgacgggaaaagtgagcgcgtactttacaccccggagattgct
gagaatcagcagatgctctccctgctgacgccgttccagaataaaggtaaggcacagctg
gatgtgaagattggcacgctcaatggtcgtctggaaggggatcgtagcaaagtccgcttc
gtgcagaccaatatggggcatctggtgctggcagcgcaaatggcgcgtaccggcgctgat
tttggcgtaatgagcggcggcggtattcgtgattccatcgaaggtggaaacattacctat
aaagacgttctgaaggtgcagccgttcggtaacgtggtggtctatgcggacatgagcggg
aaagaggtcattgactacctgaccgccgtggcgcagatgaagccggattccggtgcctat
ccgcagtttgccaacgtgagctttgtggcgaaagacggcaagcttaacgatctgaagatc
aaaggcgaaccggttgatccggctaaaacgtaccgtctggcgacgttaagctttaacgcc
acaggtggagacggctatccgcatattgataacaaaccaggctatgtgaacaccggtttt
atcgacgcggaagtgctgaagcagttcatcgagcaaaactcgccgattgacgtgaatgca
tacgagccgaaaggtgaggtgagctggcagtag
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