Cellulosilyticum lentocellum: Clole_0432
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Entry
Clole_0432 CDS
T01448
Name
(GenBank) allophanate hydrolase
KO
K01457
allophanate hydrolase [EC:
3.5.1.54
]
Organism
cle
Cellulosilyticum lentocellum
Pathway
cle00220
Arginine biosynthesis
cle00791
Atrazine degradation
cle01100
Metabolic pathways
cle01110
Biosynthesis of secondary metabolites
cle01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
cle00001
]
09100 Metabolism
09105 Amino acid metabolism
00220 Arginine biosynthesis
Clole_0432
09111 Xenobiotics biodegradation and metabolism
00791 Atrazine degradation
Clole_0432
Enzymes [BR:
cle01000
]
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
Clole_0432
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Motif
Pfam:
Amidase
AH_C
Motif
Other DBs
NCBI-ProteinID:
ADZ82174
UniProt:
F2JKL4
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Position
529771..531486
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AA seq
571 aa
AA seq
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MNYFPLKLTITWIKESYKNEELTPLALAEEIVKRAEANKEKNIWIVPPSLAMMKGYIEVL
EDKKQSDYPLWGIPFAIKDNIDLAGVQTTAACESYGYLSKESATVVQKLIDAGAIPVGKT
NLDQFATGLVGTRSPYGEVHNALNPELISGGSSSGSAVAVALGMAAFSLGTDTAGSGRVP
AALNGLVGYKPSLGAWSTKGVVPACASLDCINVFANSLEDAELVNGVARGFDEACAWSRV
YDMPFKQLPKKICLAKNGVSFYGPFKAVYEKKWEEAVSRIKDLGITVEYIDYTIFQKAAS
ILYDGPWVAERWKDLGEFVDSHLEAIFPVTKTILKSGSKPEHTAESLFSAIHELQDYRMK
TKRLLKDAVLIMPTAGGTFTREEVRNNPIKTNSQMGLYTNHCNLLDLCAISIPTKMKETN
LPFGITIFGLADSEGLILGAAKTFLEAEPMKVAVCGLHKKGYPLESQLVELGAHYLESTQ
TAAFYKLYSLDTRPIKPGMCHVGEGGKAIEVDLYELPIAKFGAFMQNVSEPLAMGTITLK
DNEKVVGFLCEDYATRTAKDITQEGKFILTK
NT seq
1716 nt
NT seq
+upstream
nt +downstream
nt
atgaattattttcctttgaaactaacaataacttggataaaagaaagctataaaaatgag
gaattaacgcccttagcattagcagaagaaatcgttaaaagagcagaggctaataaggaa
aaaaatatttggattgtgcccccttcacttgctatgatgaaaggctatattgaagtatta
gaagataagaagcaaagcgactatccactatggggtatcccttttgccattaaagacaat
attgatttagcaggtgttcaaacaacagcagcttgtgagtcttatggttatctttcaaaa
gaaagcgctactgtagtacaaaagctaattgatgcaggagcaattccggtaggtaaaact
aacttagatcagtttgcaacaggccttgtagggactagaagtccttatggagaagtacat
aatgcattaaatccagagcttattagtggaggctctagctcaggctcagcagtagcagta
gccttagggatggcagctttttcactgggaacagacacggcaggctcaggaagagtgcca
gcagcccttaatggtttagtaggttataagccttcactaggagcatggtcaactaaaggt
gttgtacctgcttgtgctagcctagattgcattaatgtatttgccaattctcttgaagat
gcagaactagttaatggagtagctagaggctttgacgaagcatgtgcatggtctagagta
tacgacatgccttttaaacagctacctaaaaaaatatgcctagctaaaaatggtgttagc
ttttatggtccctttaaagcagtttatgaaaaaaaatgggaagaagcagtcagcagaatt
aaagatttaggcataacagttgagtacattgactacaccatattccaaaaagcagcatct
attttatacgatggaccatgggtagcagaaagatggaaagatcttggagaatttgtagac
agccacttagaagcaatcttcccagttactaagaccatactcaaatctggtagtaaacca
gagcatacagcagaaagcttatttagtgccattcatgaattacaggactatcgtatgaaa
actaaaaggttacttaaagatgcggttttaataatgccaacagcaggtggtacgtttact
agagaagaagtgagaaataatccaattaaaaccaatagccagatggggctttacactaat
cattgtaatctcctcgatctttgtgctatttcaatcccaactaagatgaaagagacaaat
ttaccatttggtattaccatttttggcttagcagattcagaaggtctgatactaggtgca
gcaaaaactttcctagaagcagagccaatgaaagtagcagtttgtggtttacacaaaaaa
ggctatccattagaaagtcagctagtagaattaggagcgcattatttagaaagcacacag
actgctgctttttataagctctactcactagatacaagaccaatcaaaccaggaatgtgc
catgtgggtgagggaggaaaagctattgaagtagatttatatgaacttcctattgctaag
tttggggcctttatgcaaaacgttagcgaacctttagccatgggaaccatcaccctaaag
gataatgaaaaggtagttggttttctttgtgaagactatgccaccaggactgcaaaggat
attacccaagagggaaaatttatacttactaagtaa
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