Ruegeria sp. TM1040: TM1040_0437
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Entry
TM1040_0437 CDS
T00359
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
sit
Ruegeria sp. TM1040
Pathway
sit00360
Phenylalanine metabolism
sit01100
Metabolic pathways
sit01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
sit00001
]
09100 Metabolism
09105 Amino acid metabolism
00360 Phenylalanine metabolism
TM1040_0437
Enzymes [BR:
sit01000
]
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
TM1040_0437
3. Hydrolases
3.3 Acting on ether bonds
3.3.2 Ether hydrolases
3.3.2.12 oxepin-CoA hydrolase
TM1040_0437
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Motif
Pfam:
Aldedh
MaoC_dehydratas
MaoC_dehydrat_N
Motif
Other DBs
NCBI-ProteinID:
ABF63170
RoseoBase:
TM1040_0437
UniProt:
Q1GJJ6
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Position
complement(453126..455156)
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AA seq
676 aa
AA seq
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MCPKDVASFAAGEWIAPDHSAREIASAITGEVIARAGNATLDVQAMLDHARDTGGPALRA
MTFHDRARMLKALAQHLDAHKQELYDQSFDTGATQKDHLIDVDGGIGTVFVFASKGRREM
PDSTVYTDGAVEQLSRHGSFMGQHICTSLPGVAVHINAFNFPVWGMLEKLAPTLLAGVPA
IVKPATATCYVTEAAVRLMLDSGLLPEGALQLVSGGLGDMLDRLTCQDVVSFTGSAATAL
KLRQTPAIVENSVRFVAEQDSLNASILGPDAAPGSAEFDLFLKEVQREMTTKAGQKCTAI
RRIIVPDAQVNAVIDGLSAALAKITIGDPRADSTRMGALVSAAQKRDVLEQADKIATEAT
RVFGDPDNFTVEGADKDKGAFVPPMLFHCADPDAARHVHDTEAFGPVSTVMGYRDLSHAS
ELANRGQGSLVASLITADPVVAREVTLNIAAFHGRVYINNATSMKESTGHGSPLPHMVHG
GPGRAGGGEELGGVRAVKHYMQRTAVQGSPEILSAITGKWVPGGPETTGPAHPFTRRFGA
LTIGETLHTAPRVVTSDDVAHFAQFTGDTFYAHMDDAAAERNPFFPGRVAHGYLLLSFAA
GMFVEPNEGPVLANTGLDNLRFMKPVVPGDSIKVRLTVKAKTPRNEEYGEVRWHVTLTNQ
DDELVAEYDLLTMVAF
NT seq
2031 nt
NT seq
+upstream
nt +downstream
nt
atgtgcccgaaagatgtggcgagctttgccgccggagaatggatcgcaccggaccacagc
gcacgcgagattgcctctgccatcaccggagaggtgattgcgcgcgcgggcaatgccacg
ctcgatgtgcaagcgatgctcgatcatgcccgcgatacgggcggccccgccctgcgcgcc
atgaccttccatgaccgcgcccgcatgctcaaggcgctggcgcagcatttggacgcccac
aaacaagagctctacgaccagagctttgacaccggcgcgacccagaaggaccacctgatc
gacgtggacggcggcatcggcacggtgtttgtctttgcctccaaggggcgacgcgaaatg
cccgacagcacggtctatacagacggcgcggtcgagcaactgtcgcgccacggcagcttt
atgggccagcacatctgcacctcgctgcccggtgttgcggtacatatcaacgccttcaac
ttcccggtctggggcatgctggaaaagctcgcacccaccctgctcgccggtgttccggcc
attgtaaaaccagccaccgccacctgctacgtcaccgaggccgccgtgcgcctaatgctc
gacagcggtcttctgcccgaaggggcgttgcaactggtaagtggcggacttggcgacatg
ctggaccggctgacctgtcaggacgtggtgagctttaccggctctgccgcaaccgcgctc
aaactgcgccagacccccgcgattgttgaaaactccgtgcggtttgtagcggaacaagac
agcctcaacgcgtcgatcctcggccccgacgcagcacccggtagcgcggagtttgatctc
ttcctcaaggaagtacagcgtgagatgaccaccaaagcgggtcagaagtgtactgcgatc
cgccgcatcatcgtgcccgacgcacaggtaaacgctgtgatcgatgggctgagcgccgcg
cttgccaagatcaccattggtgacccacgcgccgacagcacccgtatgggcgcgctggtc
tccgccgcgcaaaaacgcgatgtgctggagcaagccgacaaaatcgcaaccgaggccacc
cgcgtctttggcgaccccgacaatttcaccgttgagggcgctgacaaagacaaaggcgcc
ttcgtgccgcccatgctgttccactgtgccgacccggacgccgcgcgacatgtgcacgac
accgaagcctttggccctgtctctaccgtcatgggctatcgcgacctttctcatgcgtcc
gaactcgccaatcgcggccaaggctccctcgtggcgtccctgatcaccgcagacccggtg
gtcgcacgcgaggtcacgctaaacatcgcggccttccatggacgcgtctatatcaacaat
gccacctccatgaaggaatccacgggccacggctctcccctgccccatatggtgcatggc
ggccccggtcgcgccggcggcggcgaggagctgggcggcgtgcgtgcggtgaaacactac
atgcagcgcactgcggtacagggttcgcccgagattctgtcggcgatcaccggcaaatgg
gtgcccggcggccccgaaaccacagggcccgcacatcccttcacgcgccgctttggcgca
ctcacgattggggaaacactgcacaccgcgccgcgtgtcgtcaccagcgatgacgtcgcc
cattttgcgcagttcaccggcgacaccttctatgcccacatggacgatgccgccgcagag
cgaaacccgttctttcccggccgcgttgctcatggctacctgctcctgtcctttgcagcg
ggcatgttcgtagagccgaatgagggccccgtgctcgccaataccggacttgataacctg
cgcttcatgaagccggtggtgcctggcgacagcatcaaggtgcgcctgaccgtcaaagcc
aagaccccgcgaaacgaagaatatggcgaggtccgctggcatgtgaccctcaccaatcaa
gatgatgagctggtggcggaatacgacctgctgaccatggtggcgttctga
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