Mangrovibacter phragmitis: MPHASIOC01_001181
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Entry
MPHASIOC01_001181 CDS
T10640
Symbol
atzF
Name
(GenBank) allophanate hydrolase
KO
K01457
allophanate hydrolase [EC:
3.5.1.54
]
Organism
mphg Mangrovibacter phragmitis
Pathway
mphg00220
Arginine biosynthesis
mphg00791
Atrazine degradation
mphg01100
Metabolic pathways
mphg01110
Biosynthesis of secondary metabolites
mphg01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
mphg00001
]
09100 Metabolism
09105 Amino acid metabolism
00220 Arginine biosynthesis
MPHASIOC01_001181 (atzF)
09111 Xenobiotics biodegradation and metabolism
00791 Atrazine degradation
MPHASIOC01_001181 (atzF)
Enzymes [BR:
mphg01000
]
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
MPHASIOC01_001181 (atzF)
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Paralog
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Motif
Pfam:
Amidase
AH_C
GGACT
Motif
Other DBs
NCBI-ProteinID:
XCE76308
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Position
1234067..1235881
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AA seq
604 aa
AA seq
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MSTVEYGQTLAEWRAQYTQNPHIVSSVLTRYVSQFDRADNAWIYLASEQDILTQCAALLD
ALEDGSKTLVDMPLFGVPFAVKDNIDVAGMPTTAACPAFLYHPEVDATVVARLKSAGAVV
IGKTNLDQFATGLVGTRSPYGAVVNTFNPDYVSGGSSSGSASVVARGLAAFSLGTDTAGS
GRVPAGFNNIVGLKPTKGWFSAQGVVPACRLNDTISVFALTVDDAWQVAQVAGGYDAGDA
YSRVHPGTAPAQLSNAPRFAIPEQCEFYGDSQSEQAWQQALAHLVAQGVELVPIDFTPFR
QLAEQLYYGAWVAERTVAVGSMLDQPPETMDPTVRQIVANGKAWTACDAWQAEYTRAGLA
RTIQQVLAAVDALVVPTSPTIHTLAEMAEEPVNYNSQFGTYTNFTNLADLSALAVPAGFR
QDGLPFGITLIAPAWHDLALAAFACQWQQQQALPLGATGRPLTAGASITPTLPECYVRLA
VVGAHLRGMPLNHQLTTRDAVFVEETVTADNYRLYALAGQVPAKPGLARAEQGNAIIVEL
WDVPLARFGEFVAEVPAPLGIGSVTLADGRVVKGFICEPQALGAATDITQWGGWKAWLAH
QHLA
NT seq
1815 nt
NT seq
+upstream
nt +downstream
nt
atgagtacagttgaatatgggcaaacactggcagaatggcgggcgcagtacacgcaaaac
ccgcacatcgtcagctctgtgctgacccgctatgtaagccagtttgaccgggcggataac
gcctggatctaccttgccagcgaacaggacattcttactcagtgcgcagcgttgctggat
gcgctggaagatggctccaaaacactggttgatatgccactgttcggcgtgccttttgca
gtcaaggacaatatcgatgtggcggggatgccaactactgccgcctgcccggcattcctt
taccacccggaagttgatgccacggttgttgcccgcctgaagagcgccggtgcagtggtg
attggcaaaaccaatctggatcagtttgccaccgggctggtgggcacccgttcaccttat
ggcgctgtggttaacacatttaacccggattatgtcagtggagggtccagttcaggctcg
gcatcggttgtggcccgtggtctggcggcattttcgctgggaaccgataccgccggttct
ggccgggtacctgccggtttcaataatattgtcggcctgaaacccaccaaaggctggttc
tctgcccagggggtggtgcccgcctgtcgcctgaacgacaccatttctgtatttgctctg
actgttgatgatgcctggcaagtggcgcaggtcgcgggcggctatgatgctggcgatgcc
tactcacgggttcacccgggaacagccccggcacaactgagcaacgccccccgtttcgcc
attcctgaacagtgtgagttttatggcgacagccaaagtgagcaggcctggcaacaggcg
ctggcacacctggttgcacagggtgtggagctggttcccatcgattttacgccgtttcgc
cagctcgcggagcaactctattacggtgcctgggtggcagaacgtaccgttgcggtaggg
agcatgttagaccagccaccagaaaccatggacccaaccgtgcgccagattgtggcaaat
ggcaaagcctggaccgcctgtgacgcctggcaggcggaatacacgcgagcagggctggca
cgcacaatccagcaagtattagcggcagtggatgcgctggtggtgcccacttcgccaacc
atccacacgctggcagaaatggcggaggagccggttaattacaactcgcaatttggtact
tacaccaacttcaccaacctggcagacctgagtgcgctggcggtacccgccgggttccgt
caggacggtttacccttcggtatcacgcttattgcacctgcgtggcacgaccttgcactg
gctgcattcgcctgccagtggcaacaacagcaggcgctccctctcggcgcgacggggcgc
ccattaacagcgggggcatctatcacgcccaccttgccggagtgttatgtgcgcctggcc
gttgttggtgcgcacctgcgtggtatgccgcttaaccaccaactcaccacccgtgatgcg
gtgtttgtcgaagagacggtcactgctgataactaccgcctgtatgcactggcaggccag
gttccggctaagcccgggctcgcacgggcagagcagggtaatgccattatcgttgagtta
tgggatgtgccgctggcacgttttggcgagtttgtggctgaagtccctgcaccgttgggg
ataggcagtgtcacgctggcagatggccgggtcgtgaaagggtttatctgtgaacctcag
gcgctcggcgccgccacagatattacgcaatggggtggctggaaagcctggcttgctcac
caacatcttgcctga
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