KEGG   Priestia megaterium DSM 319: BMD_0981
Entry
BMD_0981          CDS       T01219                                 
Symbol
atzF
Name
(GenBank) allophanate hydrolase
  KO
K01457  allophanate hydrolase [EC:3.5.1.54]
Organism
bmd  Priestia megaterium DSM 319
Pathway
bmd00220  Arginine biosynthesis
bmd00791  Atrazine degradation
bmd01100  Metabolic pathways
bmd01110  Biosynthesis of secondary metabolites
bmd01120  Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:bmd00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00220 Arginine biosynthesis
    BMD_0981 (atzF)
  09111 Xenobiotics biodegradation and metabolism
   00791 Atrazine degradation
    BMD_0981 (atzF)
Enzymes [BR:bmd01000]
 3. Hydrolases
  3.5  Acting on carbon-nitrogen bonds, other than peptide bonds
   3.5.1  In linear amides
    3.5.1.54  allophanate hydrolase
     BMD_0981 (atzF)
SSDB
Motif
Pfam: Amidase AH_C GGACT
Other DBs
NCBI-ProteinID: ADF37842
UniProt: D5DCM2
LinkDB
Position
complement(964751..966502)
AA seq 583 aa
MKTVSLPKTFSVQWLRNMYIKKELTPEDVVHQIFTRVEADKDMNIWITPPTLDELKPYLD
RLATLSPEALPLWGIPFAIKDNIDVAHVPTTAGCKEYTYIPSEHATVVQHLIDAGAIPLG
KTNLDQFATGLVGTRSPYGETHNALKPELISGGSSSGSAASVARGHAAFSLGTDTAGSGR
VPAGLNRLIGYKPSLGAWSSAGVVPACKSLDCVTAFAHEWSDVLLVDSIIRGVDDRDPWS
RSVVRASSALPEKIYMVKEPLSFYGTFAEQYEKAWKQAVKKIEDLSIPIEYIDGSYLSKA
AALLYDGPYVAERWADLGEFITSHKETAFPVTEQVLRSGAKSEYDAAALFQASHKLQSFK
HKAYHQLKNAVLVMPTAGGTWTREQVRENPIETNSDMGRFTNHCNLLDLCAVSLPSQDAD
LDLPFGISFFSTFDGEQFICGLSELFLNGERTADSKKDTTLVAVCGLHMRGFPLESQMRE
HGASFVRKDQTAPYYQLFKLPTSPAKPGLLRTHQQGEKIEVELWEMPLSLLGSFADSIPS
PLGLGKITLEDGSEVAGFLCEAHATEDAEDITSYRSWRALSTS
NT seq 1752 nt   +upstreamnt  +downstreamnt
atgaaaacagtgagcttgcctaaaacattttcggttcaatggttacgtaatatgtatatc
aaaaaagaattaactccggaagatgtagtacatcaaattttcacgcgtgtagaagctgac
aaagacatgaatatttggattacccctcctacactcgatgagttaaaaccttatctggat
cgcttagctacgctaagccctgaagcgttgcctttgtggggaattccattcgccattaaa
gataatatcgatgtagcacatgtaccgacgacagccggatgtaaagaatatacgtatatc
ccttctgaacatgctacggttgttcaacaccttatcgatgcaggtgctattcctcttgga
aagaccaacttggaccaatttgctacaggactggtcggtacacggagcccatatggcgaa
acgcacaatgcgttaaagccagagctcattagcggcggatcgagctcagggtcagctgca
tccgtagctcgggggcatgctgctttttctttaggcaccgatacagcaggttcagggcgg
gttccagccggtttaaaccgtctaatcggctataaaccttccctcggagcttggtcatct
gcaggtgtagttccggcatgtaaaagcttagactgcgtcactgcttttgctcatgaatgg
agtgacgtactgctcgtagattccattattagaggagtagacgatcgagacccatggtca
cgctctgttgttcgggcttcttcggcgcttcctgaaaaaatttatatggtaaaagaaccg
ctttcgttttacgggacgtttgctgagcagtacgaaaaagcgtggaaacaagctgtgaaa
aagattgaagatttatctattcccatcgaatacattgacggctcgtatttaagtaaagca
gctgctttattatatgacggcccttacgtagcagagcgctgggctgacttaggagaattt
atcacttctcataaagaaacagcctttcctgtaaccgagcaagtgcttcgttcaggagct
aaatcagaatatgatgctgctgctttatttcaagcttcacataagcttcaatcctttaaa
cataaagcatatcatcaacttaaaaatgctgttcttgttatgccgacagcaggcggaacg
tggacgcgggaacaagtaagagaaaatccaattgaaacaaacagtgacatggggcgtttt
acaaatcattgtaacttacttgacttgtgtgctgtctctcttccatctcaagatgcggat
cttgatttaccgtttggcatttcatttttctctacatttgacggcgaacaattcatttgc
ggactcagcgaattgtttttaaatggggaacgaacggctgattcaaaaaaagatacaaca
ttagtagctgtttgcggtttgcatatgcgcgggtttccacttgaatctcaaatgcgtgaa
cacggagcttcgttcgtacgaaaagaccaaaccgctccttattaccagctgtttaaactg
cctacttctccagcaaaaccagggctgttgcgaacacatcaacaaggagaaaaaattgag
gttgaactttgggaaatgcctttatcactactcggctcttttgccgattctatcccttct
cctctcggactaggcaaaatcactcttgaagacggcagtgaagtagcgggttttctttgt
gaagctcatgcgacagaagatgcggaggatattacgtcttatagaagctggcgggctctc
tcaacttcctaa

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