KEGG   Buttiauxella ferragutiae: MNO13_12360
Entry
MNO13_12360       CDS       T08104                                 
Symbol
paaZ
Name
(GenBank) phenylacetic acid degradation bifunctional protein PaaZ
  KO
K02618  oxepin-CoA hydrolase / 3-oxo-5,6-dehydrosuberyl-CoA semialdehyde dehydrogenase [EC:3.3.2.12 1.2.1.91]
Organism
bft  Buttiauxella ferragutiae
Pathway
bft00360  Phenylalanine metabolism
bft01100  Metabolic pathways
bft01120  Microbial metabolism in diverse environments
Module
bft_M00878  Phenylacetate degradation, phenylaxetate => acetyl-CoA/succinyl-CoA
Brite
KEGG Orthology (KO) [BR:bft00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00360 Phenylalanine metabolism
    MNO13_12360 (paaZ)
Enzymes [BR:bft01000]
 1. Oxidoreductases
  1.2  Acting on the aldehyde or oxo group of donors
   1.2.1  With NAD+ or NADP+ as acceptor
    1.2.1.91  3-oxo-5,6-dehydrosuberyl-CoA semialdehyde dehydrogenase
     MNO13_12360 (paaZ)
 3. Hydrolases
  3.3  Acting on ether bonds
   3.3.2  Ether hydrolases
    3.3.2.12  oxepin-CoA hydrolase
     MNO13_12360 (paaZ)
SSDB
Motif
Pfam: Aldedh MaoC_dehydratas MaoC_dehydrat_N PrpR_N
Other DBs
NCBI-ProteinID: UNK59213
LinkDB
Position
complement(2670331..2672361)
AA seq 676 aa
MQQLTSYLSGQWAMGHGKERTINHAISGEALYQVTSEGLDMAQARRYAIDHGGTALSAMT
FVQRAAMIKAVAKHLLANKEAFYAISYQTGATRADSWVDIEGGIGTLFAYAGMGNRELPD
DVLWPEDEMIPLSKQGGFAARHVLTSKSGVALHINAFNFPCWGMLEKLAPTWLAGMPAII
KPGTASAQLTHAMVKSIVDSGLVPNGAISLICGGVANLFDLLDEQDVVTFTGSASTGQKL
RCHSNIVARSVPFTMEADSLNCCVLGEDVTPEQPEFALFIREVVREMTAKAGQKCTAIRR
ILVPQAQLENVVQALKGKLEKIQPGDPAQEGVKMGALVSLEQRDDVQSKVNQLVAAGCQV
VVGGHADTALAGAFFPPTLLLCQQPDETPAVHELEAFGPVATVMPYQNAQHAMALARAGQ
GSLAGTLVTASGDIARQFVLGAARAHGRIQVLNQESSVESTGHGSPLPMLVHGGPGRAGG
GEELGGLRAVKHYMQRTAIQGSPSMLAAVSQQWSHGAAVKEDAVHPFRKHFDDLQIGESL
LTARRTITEADIVNFANLSGDHFYAHVDKIGAAESFFGERVAHGYFVVSAAAGLFVDPGV
GPVIANYGMENLRFIEPVKIGDTLQVRLTCKRKTAKPQKTTEDKPVGVVEWAVEVMNQDK
QAVALYSILTLVARKS
NT seq 2031 nt   +upstreamnt  +downstreamnt
atgcagcagttaacaagttatctgtcaggtcagtgggcgatgggccatggcaaagaacgc
acgataaatcatgcaattagcggcgaagcgctgtatcaggtcaccagtgaagggctggat
atggcgcaggcgcgccgttacgccatcgaccacggcggcaccgctttaagcgcgatgacc
tttgttcaacgcgccgccatgattaaagcggtggcaaaacatctgctggcaaataaagaa
gcgttttatgcgatttcttaccagacaggagccacccgcgcagatagctgggtggatatt
gaaggcggtatcggcaccctgttcgcttatgccgggatgggcaaccgcgaattaccagac
gatgtattgtggccagaagacgaaatgatcccgctgtctaaacaaggcggatttgccgct
cgccatgtgctgacgtcaaaatcgggcgtggcactgcacatcaacgcgtttaacttccct
tgctggggcatgttagaaaaactggctccaacctggcttgccggtatgccggcgattatc
aagcccggtactgccagcgcgcagttgacccatgcgatggtgaaatcaattgttgattca
gggctggtaccaaatggtgcaatcagcctgatttgcggtggcgtcgctaacctgtttgat
ttgctcgatgagcaagacgtagtgacctttaccggctccgccagcactggacaaaagtta
cgttgtcactcaaatattgtcgcccgatcagtacccttcacgatggaagccgactcgctg
aactgctgcgtgctgggcgaagatgtgacgccggaacaacctgaatttgcgctgtttatc
cgtgaagtggtgcgcgagatgaccgctaaagccgggcaaaaatgtaccgcgatccgccgt
attttggttccacaagcgcaacttgaaaacgtggtgcaggcgctaaaaggcaaactggag
aaaatccagcccggcgatccggcgcaggaaggcgtaaaaatgggtgcgctggtcagcctt
gagcagcgcgacgatgtgcaaagcaaagtgaaccagctggttgccgcaggctgccaggta
gtggtcggcggccacgccgatactgcccttgcgggcgcgttcttcccaccaacgttgtta
ctgtgccagcagcctgatgaaaccccagcggtgcatgaactcgaagcgtttggcccggtt
gccaccgtaatgccttatcagaatgcgcaacatgcgatggcgctggcacgtgcgggccag
gggagccttgcaggaacgctggtcacggcgagtggcgatattgcccgccagtttgtgctg
ggtgccgcgcgtgctcacgggcgaattcaggtgctgaaccaggaatcatcggtggaatcc
accggccatggttcgccattaccaatgctggttcacggcggcccaggccgagcgggtggc
ggtgaggaattgggtggcttgcgcgcagtaaaacattacatgcaacgcaccgcgattcag
ggcagcccatcaatgctggcggcggttagccaacaatggagccatggtgcggcagtgaaa
gaagatgcggtgcacccgttccgcaaacactttgacgacctgcaaattggtgaaagtttg
ctgacagctcgtcgcaccattaccgaggccgatattgtcaatttcgccaatctcagcggc
gaccatttttatgcccacgtcgacaaaattggtgcggcagaatcattctttggcgaacgc
gtcgctcacggctatttcgtggtttctgccgctgcagggctatttgttgacccaggtgtc
gggccggttatcgccaactacggtatggaaaacctgcgctttatcgagccggtaaaaatc
ggcgataccctgcaagtgcgcctgacctgtaagcgtaagaccgccaagccgcagaaaacc
accgaagataaaccggttggcgtggtggaatgggcagtagaagtgatgaaccaggataaa
caggccgtggctttatattccattttgacgctggtagcgcgtaagagttaa

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