Acidovorax carolinensis P4: CBP36_18350
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Entry
CBP36_18350 CDS
T04962
Name
(GenBank) bifunctional metallophosphatase/5'-nucleotidase
KO
K11751
5'-nucleotidase / UDP-sugar diphosphatase [EC:
3.1.3.5
3.6.1.45
]
Organism
acip
Acidovorax carolinensis P4
Pathway
acip00230
Purine metabolism
acip00240
Pyrimidine metabolism
acip00760
Nicotinate and nicotinamide metabolism
acip01100
Metabolic pathways
acip01110
Biosynthesis of secondary metabolites
acip01232
Nucleotide metabolism
Brite
KEGG Orthology (KO) [BR:
acip00001
]
09100 Metabolism
09104 Nucleotide metabolism
00230 Purine metabolism
CBP36_18350
00240 Pyrimidine metabolism
CBP36_18350
09108 Metabolism of cofactors and vitamins
00760 Nicotinate and nicotinamide metabolism
CBP36_18350
Enzymes [BR:
acip01000
]
3. Hydrolases
3.1 Acting on ester bonds
3.1.3 Phosphoric-monoester hydrolases
3.1.3.5 5'-nucleotidase
CBP36_18350
3.6 Acting on acid anhydrides
3.6.1 In phosphorus-containing anhydrides
3.6.1.45 UDP-sugar diphosphatase
CBP36_18350
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Gene cluster
GFIT
Motif
Pfam:
5_nucleotid_C
Metallophos
NadN_nucleosid_C
NAD_binding_10
Putative_PNPOx_2
Motif
Other DBs
NCBI-ProteinID:
ART60523
UniProt:
A0A240UHH6
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Position
complement(3948448..3950337)
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AA seq
629 aa
AA seq
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MHLHAPFSTPRRPLALMGALTLGLAACGGSDDAPSFKTIELNIAHINDHHSQLDAFAATE
LTLDGVATQVELGGFARQTAVFKSLAGTPNLLKLHAGDAITGSLYYTFFKGKADAQMMNS
ICFDAFVPGNHEFDDGDGVFKGFLDALADPANGGNCKTPTLSANIVPQAGTPLAPAGAPA
YLQPYTIKKIDGVDVGIVGVTIAAKTMNSSRPLATTQFQDEAKAAQKAIDDLKAKGVRHI
VLMSHLGYDNDKQIAAQLTDLDVVIGGDSHTLLGDFKAVGVASATGAYPTVVKNKSGETV
CIGQAWEYAKAYGLMNVKFNAQGSVASCAGKTQLVIGDSFKRKDSAGAWQPLADADRAAL
VTKLASHANVKVVTPDAAATQTLSGYASQVTAQKAITIGTASEALCLMRVPGGSNSRNTG
VAGCETANTLARGSDAAQVVAEAFLRASKRADFALQNAGGVRTPIAAGSLSMNTAFTLLP
FTNVLVEMDLKGSEVIAALEDGVAAHLDAAVPSDGAHPYAAGLRWDLDMSKAKGQRFSNV
QVRNKTTGAWAAIDPAKTYVLVTNDFVAAGGDGYATLKPVYTAGRYVNTYLLYTQSFVDY
VIAQGTIARPKAADYAHQKVITKAGVALP
NT seq
1890 nt
NT seq
+upstream
nt +downstream
nt
atgcacctgcacgctccgttctccacgccccgccgtccgctggctctgatgggcgcactt
accctgggcctggcggcctgcggcggcagtgacgatgcacccagtttcaagaccatcgag
ctgaacatcgcccacatcaacgaccaccactcgcagctcgatgcgtttgccgccaccgag
ctgacgctcgatggcgtggccacacaggtcgaactgggcggttttgcgcgccagacggcg
gtgttcaagtcgcttgccggcacgcccaacctgctcaagctgcacgcgggcgacgccatc
acgggctcgctgtactacaccttcttcaagggcaaggccgatgcgcagatgatgaacagc
atttgctttgacgccttcgttcccggcaaccacgaatttgacgatggcgacggcgtcttc
aagggcttcctggatgcactggccgacccggccaacggcggcaactgcaagacgcccaca
ctgtcggccaacatcgtgccgcaggccggcacgccgctggccccggccggcgcccccgcc
tacctgcagccctacaccatcaagaagatcgacggcgtggacgtgggcatcgtgggcgtg
accattgctgccaagacgatgaactcttcgcgcccgctggccaccacccagttccaggac
gaggcgaaggcggcacagaaggccatcgacgacctcaaggccaagggcgtgcgccacatc
gtgttgatgtcgcacctgggctacgacaacgacaagcagatcgccgcgcaactgaccgat
ttggacgtggtcatcggtggcgactcgcacaccctgctgggcgacttcaaggcggtcggg
gttgcttccgccaccggagcctaccccacggtggtcaagaacaaatcgggcgagaccgtg
tgtatcggccaggcctgggaatacgccaaggcctacgggctcatgaacgtgaagttcaat
gcgcaaggcagcgtagccagctgcgcaggcaagacccagctggtgattggcgacagcttc
aagcgcaaggacagcgcgggcgcgtggcagcccctggccgacgccgaccgcgccgcactg
gtcaccaagctggcctcccatgccaacgtgaaggtcgtgacgcccgacgccgcagccacc
cagacactatccggctacgcatcccaggtcacggcccagaaggccatcaccatcggcacg
gccagcgaagccctgtgcctgatgcgcgtgcccggtggctccaatagccgcaacaccggt
gtggcaggctgcgaaaccgccaacaccctggcgcgcggcagcgacgccgcccaggtggtg
gccgaagccttcctgcgcgccagcaagcgcgcagactttgcgctgcaaaacgccggtggc
gtgcgcacgccgattgctgctggctcgctcagcatgaacacggcgttcacgctgctgccg
ttcaccaacgtactggttgagatggacctcaagggttcggaagtgattgccgccctggaa
gacggcgtggccgcccatctggacgcggctgtgccttcggacggcgcgcacccctacgcc
gcaggcctgcgctgggacctggacatgagcaaagccaagggccagcgcttcagcaacgta
caggtgcgcaacaagaccaccggcgcctgggccgccatcgaccctgccaagacctacgtg
ctggtcaccaacgacttcgtggctgcgggtggtgatggttatgccacgctcaagcccgtc
tacaccgcaggccgctatgtcaacacctacctgctctacacccagagcttcgtggactat
gtgatcgcccagggcaccatcgcccgccccaaggcggccgactacgcgcaccagaaggtc
atcaccaaggccggcgtggcgctgccctga
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