KEGG   Candidatus Melainabacteria bacterium MEL.A1: BHV42_02700
Entry
BHV42_02700       CDS       T04546                                 
Name
(GenBank) hypothetical protein
  KO
K11751  5'-nucleotidase / UDP-sugar diphosphatase [EC:3.1.3.5 3.6.1.45]
Organism
mbf  Candidatus Melainabacteria bacterium MEL.A1
Pathway
mbf00230  Purine metabolism
mbf00240  Pyrimidine metabolism
mbf00760  Nicotinate and nicotinamide metabolism
mbf01100  Metabolic pathways
mbf01110  Biosynthesis of secondary metabolites
mbf01232  Nucleotide metabolism
Brite
KEGG Orthology (KO) [BR:mbf00001]
 09100 Metabolism
  09104 Nucleotide metabolism
   00230 Purine metabolism
    BHV42_02700
   00240 Pyrimidine metabolism
    BHV42_02700
  09108 Metabolism of cofactors and vitamins
   00760 Nicotinate and nicotinamide metabolism
    BHV42_02700
Enzymes [BR:mbf01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.3  Phosphoric-monoester hydrolases
    3.1.3.5  5'-nucleotidase
     BHV42_02700
  3.6  Acting on acid anhydrides
   3.6.1  In phosphorus-containing anhydrides
    3.6.1.45  UDP-sugar diphosphatase
     BHV42_02700
SSDB
Motif
Pfam: 5_nucleotid_C Metallophos Osmo_CC
Other DBs
NCBI-ProteinID: AOR38172
LinkDB
Position
complement(568449..569987)
AA seq 512 aa
MITPINSSQLNFTAQAVKSKSPDGKTEPNSRTSIFYINDFHGKSINMERTIAASNVFDSF
TPSVPTDKLKLSSGDIQLGEPVPANKVMVEAQNIMGIMASAVGNHECDMPEHIAELIPHM
GYKMLACNVNIKPENPLCDKIKKSYIQEVDGNRYGIIGAAPVDLFSRLKYGKIFDELKVD
NVENTIKDIQTEVDKLKKQGVNKIILLSHVGFGYDQQIAKNTEGIDIILGGHSHNLVKDV
KPGVNLFNSKAGEPVVITQAGRDGNYFGVLNVEWDKNGVMTKVQNNVTSTRGFKRSPLVK
HVFEQILGKPKVVGVINSAPPPPNNASIDPSGHANFMCDCMKEELGTDIALFGSATIRGY
FEAGKLDTRWLDDISPFKNKMVVADYSEKEIVDALKVSAKSLVNPNNKPGIVHVSGLKYT
IGKNGELRSATFVAKDGKETPIDIKNPRTDKTYKTALTDYYAQGHDGFTMLKKIDKADRV
CNFDITQCVEDYMARHKEPVDIVDDGRIQVVD
NT seq 1539 nt   +upstreamnt  +downstreamnt
atgataacgcccattaacagttcacaattgaattttacagcgcaggcggttaaaagcaaa
tcgccagacggtaaaacagaacctaacagtcgtacaagcatcttttacattaatgatttt
catggcaaatcaataaacatggaaagaacaattgctgcatcaaatgtttttgatagcttt
acgccatctgttccgactgataagctaaaattgtcatcaggcgatattcagctcggtgaa
cctgttcctgcaaataaagttatggttgaagcacagaatattatggggattatggcatca
gcggtcggaaatcacgaatgcgatatgcctgagcatattgcagagttaattccgcacatg
ggctataaaatgcttgcttgtaatgttaatataaaacctgaaaacccactctgtgacaag
attaaaaaatcatatatccaagaagttgatggtaacagatacggaattattggtgctgca
ccggttgatttattctctcgtttgaaatatggcaagatttttgatgaattaaaagttgat
aatgtagaaaatacaataaaagatattcaaacagaagttgataaactaaaaaagcaaggt
gtaaataagattatcttgttatcacatgttggttttggttatgatcaacagattgccaaa
aatacagaaggtattgatataattttgggtgggcattctcacaatttagttaaggatgta
aaacctggtgtaaatttgtttaattcaaaagcgggtgaacctgttgtaattacgcaagct
ggacgtgatggaaactattttggtgttttgaatgttgaatgggataaaaatggtgttatg
acaaaggttcaaaacaatgttacaagcacaagaggctttaagcgtagtccgcttgtaaaa
catgtatttgaacaaattttgggcaaaccaaaagtggtaggggttataaattctgctcca
cctcctccaaataacgcatctattgacccaagtggtcatgcaaactttatgtgtgattgt
atgaaagaagaattaggtactgacattgccttattcggttctgcaacaattagaggttac
tttgaggcaggaaaacttgatacaagatggttagatgatatttctccattcaaaaataag
atggttgttgctgattattcggaaaaagaaattgtcgatgctttgaaggtttccgcaaaa
tctctcgtaaatccgaataataaacctggaattgttcatgtgtcaggtttgaaatacaca
attggaaaaaatggtgaattaagaagtgcgacttttgttgcaaaagatggcaaagaaact
ccgattgatataaaaaatccgagaaccgataaaacttataaaactgctctaacagattat
tatgcgcaaggtcatgatgggtttacgatgttgaaaaaaattgacaaagcggatagggtt
tgcaattttgacattactcagtgtgtagaagattatatggcacgccacaaagaacctgtt
gatattgttgatgatggtagaatacaggttgtagattaa

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