KEGG   Leclercia adecarboxylata: APT61_12770
Entry
APT61_12770       CDS       T04232                                 
Name
(GenBank) amidase
  KO
K01426  amidase [EC:3.5.1.4]
Organism
lax  Leclercia adecarboxylata
Pathway
lax00330  Arginine and proline metabolism
lax00360  Phenylalanine metabolism
lax00380  Tryptophan metabolism
lax00627  Aminobenzoate degradation
lax00643  Styrene degradation
lax01100  Metabolic pathways
lax01120  Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:lax00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00330 Arginine and proline metabolism
    APT61_12770
   00360 Phenylalanine metabolism
    APT61_12770
   00380 Tryptophan metabolism
    APT61_12770
  09111 Xenobiotics biodegradation and metabolism
   00627 Aminobenzoate degradation
    APT61_12770
   00643 Styrene degradation
    APT61_12770
Enzymes [BR:lax01000]
 3. Hydrolases
  3.5  Acting on carbon-nitrogen bonds, other than peptide bonds
   3.5.1  In linear amides
    3.5.1.4  amidase
     APT61_12770
SSDB
Motif
Pfam: Amidase Lipid_DES
Other DBs
NCBI-ProteinID: ALZ96837
LinkDB
Position
complement(2734302..2735615)
AA seq 437 aa
MQKMRLIPPDDCVAEITRRLAIIDAHPQLNAILGVNPAALVEAAASQKLRRRGQLTGPLH
GVPVIVKDNIACAGLPLTLGCASLAQLRATTDALVVRRLREAGAIILARANMSEFAFDVR
SRSSLGGDVRHPRFPAITAGGSSGGSAAAVAAGMAEGALGTDTGGSIRIPCSYTGLVGLR
PRVRRAQMQGIAPLSLSKDTVGPMVHNVQDAALLHAIIHGQTPGAVTPLSLKGVRLGVIR
ALEGEDPEQLAVWYDAIATLRRHGATVVNVALPILPEVARATCLSLYEFRVAFDAWLQQH
PGAPADLNAIIASGQFLPEFMPLLTQMIASEKLKTPQWLAGRQLRRRLRQTLDLLAEQGR
LDGFLYPTVGRVPVSLEKMPPGCAPELAAISGSAAITLPCGTTRTGFPVGLEILSPAGEE
SALLALAAACETAFTLP
NT seq 1314 nt   +upstreamnt  +downstreamnt
atgcaaaaaatgcggctgataccacctgatgactgcgttgcggagataacccggcggctg
gccattattgacgcgcacccgcagctgaatgccattctcggggtgaacccggcggccctg
gttgaggcggcagcgagccagaaactgcggcgtcgcggccagcttacagggcctctgcac
ggcgtgccggtgatcgtaaaagataacattgcctgcgccgggctgcccctgacgctgggt
tgcgcctctctggctcaactgcgggcgaccaccgatgccctggtagtgcgtcgcctgcgg
gaagccggggcgattattctggcccgggcgaatatgtctgagtttgcctttgacgtccgc
tcccgcagctcgctggggggcgacgtgcgccacccgcggtttccggccattaccgcaggc
ggctccagcggaggcagcgctgcggcggtggcggccgggatggcggaaggggcgctgggc
accgatacgggcggatcgatccgcattccctgtagctataccgggctggtggggttaagg
ccgcgggtgcgcagggcgcagatgcagggcattgcccccctctccctgagtaaagatacg
gtggggccgatggtgcacaacgtgcaggacgcggccctgctgcatgcgatcatccatggt
cagacgccgggtgccgttacaccgttgtcgctgaaaggcgtgcgcttgggagtgatccgt
gctctggagggagaggaccctgaacaactggccgtctggtatgacgccatcgcaaccctg
agacggcacggcgccaccgtcgtcaacgttgccctgccaatcctgcctgaagtggcccga
gccacatgcctgagcctgtatgagtttcgcgtggcgtttgacgcctggttacagcagcat
ccgggcgcacccgcggatctgaacgcgattatcgcctcggggcagtttttgccggaattc
atgccgcttctgacgcagatgatcgccagcgaaaagttaaaaacgccccagtggctggcc
ggacggcagctgcggcgtcggctgcgccagaccctggacctgctggcggagcaggggcga
ctcgacggttttctctatccgacggtcggccgggttccggtaagccttgagaaaatgccg
cccggctgcgcgcctgagctggcggccatcagcggatccgccgctatcacgctcccctgc
ggcacaacacgaaccggttttcccgtgggactggaaattctttcccccgccggggaggaa
tcagcgctgctggcgttggccgccgcctgcgaaaccgcgtttactctgccgtaa

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