Burkholderia semiarida: R0290_28220
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Entry
R0290_28220 CDS
T10421
Name
(GenBank) amidase
KO
K01426
amidase [EC:
3.5.1.4
]
Organism
bser Burkholderia semiarida
Pathway
bser00330
Arginine and proline metabolism
bser00360
Phenylalanine metabolism
bser00380
Tryptophan metabolism
bser00627
Aminobenzoate degradation
bser00643
Styrene degradation
bser01100
Metabolic pathways
bser01120
Microbial metabolism in diverse environments
Brite
Enzymes [BR:
bser01000
]
3. Hydrolases
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
3.5.1 In linear amides
3.5.1.4 amidase
R0290_28220
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NCBI-ProteinID:
XCV62897
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Position
2:complement(2719155..2720639)
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AA seq
494 aa
AA seq
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MPHGAPQFLAPASISVDPIVRLSAGELAAAIRSKAVSCVETMRAYLDHIERVNGAVNAIV
ALREPDALLAEAAEKDAALARGEYRGWLHGIPQAPKDLAMTKGLRTTYGSPIFRENVPQA
DSVGVARMRAAGAIFIGKTNTPEFGLGSHTFNEVYGATRNPYDLTKSAGGSSGGTAAALA
SRMLPVADGSDFGGSLRNPAAFCNVYGFRPSQGRVPRWPGVDVFMQQLGIEGPMGRTVGD
VAQLLAIQAGYDRNDPLSLAEDPAVFAQPLDADLRGKRIAWVGDWNGYLATEAGVLAQCQ
RGLAALREIGCDVDAALPAFAPDRIWRLWLTHRHLLSGGGLLAHYRDPARRALLKPEAIY
EVEGLLAMQGAAVFDASVERTAWHQAVLSFFDRYDFIAAPTAQVFPFDVEQRWPQEIAGR
AMDTYHRWMETVVPWTLAGCPVINVPVGFNDAGLPMGMQLIGRPRADLAVLQLARGYEQA
ADWVARRVPAWMAA
NT seq
1485 nt
NT seq
+upstream
nt +downstream
nt
atgccgcacggcgccccgcagtttctcgctcccgcttccatttccgtcgatccgatcgtg
cgcctgtcggccggcgagctcgcggcggcgatccgcagcaaggcggtttcgtgcgtcgag
acgatgcgtgcgtatctcgatcacatcgagcgtgtgaacggcgcggtcaacgcgatcgtc
gcgctgcgcgagcccgatgcgctgctggccgaagccgcggaaaaggatgcggcgctggcg
cgcggcgagtaccgcggctggctgcacgggataccgcaggcgccgaaggatctggcgatg
acgaaggggctgcggacgacctacggctcgccgatcttccgcgagaacgtgccgcaggcc
gattccgtcggcgtcgcgcgaatgcgggcggcgggtgcgatcttcatcggcaagaccaat
acgccggagtttggcctcggttcgcacacgttcaacgaggtctacggcgcgacgcgcaac
ccgtacgacctgacgaagagcgcgggcggcagcagcggcggcacagcggccgcgctcgcg
tcgcggatgctgccggtggcggacggcagcgatttcggcggatcgctgcgcaatccggcc
gcgttctgcaacgtctacggcttccgtccgtcgcagggccgcgtgccgcgctggccgggc
gtcgacgtgttcatgcagcagctcggcatcgaagggccgatgggccgcaccgtcggcgac
gtcgcgcaactgctcgcgatccaggccggctacgaccgcaacgatccgctgtcgctcgcg
gaggatccggccgtgttcgcgcagccgctcgacgcggatctgcgcggcaagcgcatcgcg
tgggtgggcgactggaacggctatctcgcgaccgaggcaggcgtgctcgcgcagtgccag
cgcgggctggcggcgctgcgcgagatcggctgcgacgtcgatgccgcgctgccggcgttc
gcgcccgaccggatctggcgcctgtggctcacgcaccggcacttgctgtcgggcggcggg
ctgcttgcgcactatcgcgacccggcgcgccgcgcgctgctgaagcccgaggcgatctac
gaggtcgaagggctgctcgcgatgcagggcgcggcggtattcgacgcgagcgtcgaacgc
accgcgtggcatcaggcggtgctgagcttcttcgatcgttacgacttcatcgcggcgccg
accgcgcaggtatttccgttcgacgtcgaacagcgctggccgcaggagatcgcggggcgc
gcgatggacacgtaccaccgctggatggaaacggtcgtgccgtggacgctcgccggctgc
ccggtgatcaacgtgccggtcggcttcaacgacgcgggattgccgatggggatgcagctg
atcgggcgtccgcgcgccgatctcgcggtgctgcagcttgcgcgcggctacgagcaggcg
gccgactgggtggcgcggcgcgtgccggcatggatggcggcgtga
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