KEGG   Serratia sp. FGI94: D781_2879
Entry
D781_2879         CDS       T02433                                 
Name
(GenBank) phenylacetic acid degradation protein paaN
  KO
K02618  oxepin-CoA hydrolase / 3-oxo-5,6-dehydrosuberyl-CoA semialdehyde dehydrogenase [EC:3.3.2.12 1.2.1.91]
Organism
smaf  Serratia sp. FGI94
Pathway
smaf00360  Phenylalanine metabolism
smaf01100  Metabolic pathways
smaf01120  Microbial metabolism in diverse environments
Module
smaf_M00878  Phenylacetate degradation, phenylaxetate => acetyl-CoA/succinyl-CoA
Brite
KEGG Orthology (KO) [BR:smaf00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00360 Phenylalanine metabolism
    D781_2879
Enzymes [BR:smaf01000]
 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
     D781_2879
 3. Hydrolases
  3.3  Acting on ether bonds
   3.3.2  Ether hydrolases
    3.3.2.12  oxepin-CoA hydrolase
     D781_2879
SSDB
Motif
Pfam: Aldedh MaoC_dehydratas
Other DBs
NCBI-ProteinID: AGB83122
UniProt: L0MII6
LinkDB
Position
complement(3031103..3033181)
AA seq 692 aa
MQQLNSYLSGRWLYGQGQAREIRHALTGEPLYQVCSEGLPLADSLRYAREQGGRALAAMT
FQQRAQMMKAVAKYLLAHKETLYEISYQTGATRNDGWVDIEGGIATLFSYAGLAGRELPD
DTLWPEDEPIPLSKQGQFVARHVLTSRPGVALHINAFNFPCWGMLEKLAPTWLAGMPAIV
KPATASAQLTQAMVKLIIDSGLVPDGALQLICGGVGDLFDHLDYQDAVTFTGSAQTGRQL
RAHPQLLAKSIPFTMEADSLNCCVLGEDVTPEMPEFALFIKEVCREMTSKAGQKCTAIRR
VMVPAAQVEAVKQALLQRLAAVKVGDPRLEQVRMGALVSLEQRDDVQKKVEQLLHNGCEP
LCGASLQSFSVEGDDGHQGAFYPPTLLYCAEPLHNTAVHDIEVFGPVATLMPYDSGEQAI
ELALLGQGSLAGSLVTADAALATRFIRAAACAHGRMLVLDSAAAAESTGHGSPLPMLMHG
GPGRAGGGEELGGLRAVKHYMQRTALQGSPSMLAAIGKEWVRGAEALESPVHPFRKYFEQ
LPIGESLLTARRTVTEADIVNFACLSGDHFYAHMDKLGAAESLFGERVAHGYFVVSAAAG
LFVDPGVGPVIANYGMENLRFIEPVKIGDTIQVRLTCKKKIRKPQKSAEDRPHGVVVWDV
QVLNQHQQAVALYSILTLVARQQGDFPSSEAQ
NT seq 2079 nt   +upstreamnt  +downstreamnt
atgcagcagttgaacagttacctgtcggggcgttggctatacggccaggggcaggctcgc
gagatccgtcacgcgctaaccggcgagccgttgtatcaggtgtgctctgaggggctgccg
ctggccgacagcctgcgctatgcgcgggagcagggcggtcgcgcgctggcggcgatgacg
ttccagcagcgcgcgcagatgatgaaggcggtggcgaaatacctgctggcgcacaaagag
acgctgtatgagatctcgtaccagaccggcgcgacgcgcaacgacggctgggtggatatt
gaaggcggcatcgccacgctgttctcctatgccggcctggccggtcgtgaactgccggac
gacaccctgtggccggaagacgagccgatcccgctgtcgaagcagggccagtttgtggcg
cgccacgtgctgacctcacgccccggcgtggcgctgcatattaacgccttcaacttcccc
tgctgggggatgctggaaaagctggcgccgacctggctggcgggcatgccggcgatcgtc
aagcccgccaccgccagcgcccagctgacgcaggcgatggtgaagctgattatcgacagc
gggctggtgccggacggggcgctgcagctgatttgcggcggcgtcggcgatctgtttgac
catctggactatcaggatgcggtgacctttaccggttcggcgcagaccggccggcagctg
cgcgcccatccgcagctgctggccaagtcgatcccgtttaccatggaggccgactcgctg
aactgctgcgtgctgggagaggacgtcacgccggagatgccggagttcgccctgtttatt
aaagaggtgtgccgtgagatgaccagcaaggcggggcagaaatgcaccgccattcgccgg
gtgatggtgccggcggcgcaggttgaggcggtgaagcaggcgctgctgcagcgcctggcg
gcggtgaaggtcggcgatccgcggctggagcaggtcaggatgggagcgctggtcagcctg
gaacagcgggacgacgtgcagaagaaggttgagcaactgttgcacaacggctgtgaaccg
ctgtgcggcgccagcctgcagtccttcagcgtggagggggatgatgggcaccagggcgcg
ttttacccaccgaccctgctgtactgcgccgagccgctgcacaataccgcggtacacgat
attgaagtctttggcccggtcgctaccctgatgccgtacgacagcggcgagcaggcgatt
gagctggcgctgctggggcagggcagcctggccggttcgctggtcaccgccgatgcggcg
ctggcgacgcgctttatccgcgcagccgcctgcgcccacgggcggatgctggtgttggac
agcgcagcggcggcggagtcgaccggccacggttcgccgctgccgatgctgatgcacggc
gggccgggacgcgccggcggcggcgaggaactgggtggcctgcgggcggtgaagcactat
atgcagcgcaccgcgctgcagggcagtccgagcatgctggcggcgatcggcaaagagtgg
gtgcgcggcgccgaggcgctggaatcgccggttcatccgttccgcaagtattttgaacag
ctgccgatcggcgaaagcctgctcaccgcgcggcgtacggtgaccgaggcggatatcgtc
aacttcgcctgcctgagcggcgaccatttctatgcccatatggataagctcggcgcggcg
gagtcgctgttcggcgagcgcgtagcccacggctactttgtggtgtctgcggcggcggga
ctgtttgtcgaccccggcgtcgggccggtgatcgccaactacggcatggagaacctgcgt
tttatcgagccggtgaagatcggcgataccattcaggtgcggctgacctgtaagaagaaa
atccgcaagccgcagaaaagcgcggaagatcggccgcacggcgtggtggtgtgggatgtg
caggtgctgaaccagcatcagcaggcggtggcgctgtacagcattttaacgctggtggcg
cgccagcaaggcgatttcccgtcgtccgaggcgcaataa

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