KEGG   Burkholderia sp. PAMC 26561: AXG89_13465
Entry
AXG89_13465       CDS       T05481                                 
Name
(GenBank) carboxymethylenebutenolidase
  KO
K01061  carboxymethylenebutenolidase [EC:3.1.1.45]
Organism
bum  Burkholderia sp. PAMC 26561
Pathway
bum00361  Chlorocyclohexane and chlorobenzene degradation
bum00364  Fluorobenzoate degradation
bum00623  Toluene degradation
bum01100  Metabolic pathways
bum01120  Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:bum00001]
 09100 Metabolism
  09111 Xenobiotics biodegradation and metabolism
   00364 Fluorobenzoate degradation
    AXG89_13465
   00361 Chlorocyclohexane and chlorobenzene degradation
    AXG89_13465
   00623 Toluene degradation
    AXG89_13465
Enzymes [BR:bum01000]
 3. Hydrolases
  3.1  Acting on ester bonds
   3.1.1  Carboxylic-ester hydrolases
    3.1.1.45  carboxymethylenebutenolidase
     AXG89_13465
SSDB
Motif
Pfam: DLH SnoaL_2 SnoaL Abhydrolase_6 Abhydrolase_11 Thioesterase Abhydrolase_1 LIDHydrolase
Other DBs
NCBI-ProteinID: AME24709
UniProt: A0A109WNV8
LinkDB
Position
1:complement(2947950..2949188)
AA seq 412 aa
MSSQTIEITAQDGGRFTAYLAKPAQGSGPGLVLLQEIFGINDYMKSMADRYAEEGYVVLV
PDLFWRMKPGVVLGYGEADFAAALDFNARFDEPEALDDIAATLAALRALPEQAGKLGVIG
YCLGGRLAMRTAASMDVDCAVSYYGVDLDAYLGEIATIRCPMVFHFAENDTFTPPETRAK
LEAAFAGKPLIEHYVYAGCDHAFATPERDHYDKPAALMAYSRTLSLLRKVLGPVYDLNRL
WEMHCYYEFGTRDVDAVMPTMVAEPYVNHVPTMTGGVGHDQLKRFYKYHFVDSNPADTRL
IPVSRTIGSDRVVDEFVFCATHDREIDWLLPGLKPTGKYFEVPMLAVIRFRGDKLYNEHI
YWDQASVLVQIGVLDPTGLPVAGIQTAKKMIDETLPTNTLMPNWASSEGKPV
NT seq 1239 nt   +upstreamnt  +downstreamnt
atgagcagtcagacgattgaaatcacggcgcaggacggcggccgatttactgcgtatctc
gcgaaacccgcgcaaggttcgggtcccggccttgttttgctccaggaaattttcggcatc
aacgactacatgaagtcgatggccgaccgttacgccgaagaaggttacgtcgtgctcgta
ccggatctgttctggcgcatgaaacccggcgtggtattgggctacggggaagcggatttc
gccgctgcgctcgacttcaacgcgagattcgacgaacccgaagcgctcgacgatatcgcc
gcgacactcgctgccttgcgtgcgctgcccgagcaagcgggcaagctcggggtgatcggc
tattgcctcggcggccgtctcgcgatgcgcacagcggcaagcatggacgtggactgcgcg
gtgagttactacggcgtggacctcgatgcgtatctcggcgagatcgccaccatccgctgc
ccgatggttttccacttcgccgaaaacgatacgttcacgccgcctgaaacccgcgcgaag
ctcgaagccgcgttcgccggcaaaccgctgatcgagcattacgtctacgcgggttgcgat
cacgccttcgccacgcccgagcgcgatcactacgacaagcccgcggccctgatggcctat
tcgcggaccctgtcattgctgcgcaaggtgctgggtcccgtgtacgacctgaaccgcctg
tgggagatgcattgctactacgagttcggcacgcgcgacgtcgacgccgtcatgccgacc
atggtggccgagccttacgtgaaccacgttccgaccatgacgggcggtgtcggtcatgat
caattgaagcgcttttacaagtaccatttcgtcgattccaatcccgccgatacacgcctg
attccggtgtcccggaccatcggctcggatcgggttgtcgatgaattcgtgttctgcgcc
acgcacgatcgcgagatcgactggctgttgccgggactcaagcctacgggcaaatacttc
gaggttcccatgctggccgtaatccggtttcgcggcgacaagctttacaacgagcacatc
tactgggatcaggcttcggtgctggtgcagatcggcgtgctcgatccgacgggtctgccg
gtcgcgggcatccagaccgccaaaaagatgatcgatgaaaccctcccgaccaacacgctg
atgccgaactgggcatcgagcgagggcaagcccgtttga

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