KEGG   Lactobacillus reuteri DSM 20016: Lreu_0321Help
Entry
Lreu_0321         CDS       T00535                                 

Definition
bifunctional acetaldehyde-CoA/alcohol dehydrogenase
Orthology
K04072  
acetaldehyde dehydrogenase / alcohol dehydrogenase [EC:1.2.1.10 1.1.1.1]
Organism
lre  Lactobacillus reuteri DSM 20016
Pathway
Glycolysis / Gluconeogenesis
Fatty acid degradation
Tyrosine metabolism
Benzoate degradation
Pyruvate metabolism
Dioxin degradation
Xylene degradation
Chloroalkane and chloroalkene degradation
Naphthalene degradation
Butanoate metabolism
Metabolic pathways
Biosynthesis of secondary metabolites
Microbial metabolism in diverse environments
Degradation of aromatic compounds
Class
Metabolism; Overview; Degradation of aromatic compounds [PATH:lre01220]
Metabolism; Carbohydrate metabolism; Glycolysis / Gluconeogenesis [PATH:lre00010]
Metabolism; Carbohydrate metabolism; Pyruvate metabolism [PATH:lre00620]
Metabolism; Carbohydrate metabolism; Butanoate metabolism [PATH:lre00650]
Metabolism; Lipid metabolism; Fatty acid degradation [PATH:lre00071]
Metabolism; Amino acid metabolism; Tyrosine metabolism [PATH:lre00350]
Metabolism; Xenobiotics biodegradation and metabolism; Benzoate degradation [PATH:lre00362]
Metabolism; Xenobiotics biodegradation and metabolism; Chloroalkane and chloroalkene degradation [PATH:lre00625]
Metabolism; Xenobiotics biodegradation and metabolism; Xylene degradation [PATH:lre00622]
Metabolism; Xenobiotics biodegradation and metabolism; Dioxin degradation [PATH:lre00621]
Metabolism; Xenobiotics biodegradation and metabolism; Naphthalene degradation [PATH:lre00626]
BRITE hierarchy
SSDB OrthologParalogGene clusterGFIT
Motif Motif
Other DBs
NCBI-GI: 
NCBI-GeneID: 
JGI: 
UniProt: 
Position
complement(365374..368010)
Genome map
AA seq 878 aa AA seqDB search
MPANNKKQVEKKELTAEEKKQNAQKLVDDLMTKSQAAFEKLRYYSQEQVDKICQAMALAA
EEHHMDLAVDAANETGRGVAEDKAIKNIYASEYIWNNIRHDKTVGIIEDNDEDQTIKIAD
PLGVIAGIVPVTNPTSTTIFKSIISAKTRNTIIFSFHRQAMKSSIKTAKILQEAAEKAGA
PKNMIQWLPESTRENTTALLQHPNTATILATGGPSLVKAAYSSGNPALGVGPGNGPAYIE
KTANIERSVYDIVLSKTFDNGMICATENSVVVDEEIYDKVKEEFQKWNCYFLKPNEIDKF
TDGFIDPDRHQVRGPIAGRSANAIADMCGIKVPDNTKVIIAEYEGVGDKYPLSAEKLSPV
LTMYKATSHENAFDICAQLLHYGGEGHTAAIHTLDDDLATKYGLEMRASRIIVNSPSGIG
GIGNIYNNMTPSLTLGTGSYGSNSISHNVTDWDLLNIKTIAKRRENRQWVKIPPKVYFQR
NSLKELQDIPNINRAFIVTGPGMSKRGYVQRVIDQLRQRQNNTAFLVFDDVEEDPSTNTV
EKGVAMMNDFKPDTIIALGGGSPMDAAKAMWMFYEHPETSWYGVMQKYLDIRKRAYQIKK
PTKSQLIGIPTTSGTGSEVTPFAVITDSKTHVKYPLADYALTPNIAIVDSQFVETVPAKT
TAWTGLDVLCHATESYVSVMATDYTRGWSLQTIKGVMENLPKSVQGDKLARRKMHDFSTM
AGMAFGQAFLGINHSLAHKMGGAFGLPHGLLIAIAMPQVIRFNAKRPQKLALWPHYETYH
ATKDYADIARFIGLKGNTDEELAEAYAKKVIELAHECGVKLSLKDNGVTREEFDKAVDDL
ARLAYEDQCTTTNPVEPLVSQLKELLERCYDGTGVEEK
NT seq 2637 nt NT seq  +upstreamnt  +downstreamnt
atgcctgctaacaacaagaaacaagttgaaaagaaagaattaactgctgaagaaaaaaag
caaaacgcccaaaagctagttgacgatttaatgactaagagtcaagctgcttttgaaaag
ttacgttactattcacaagaacaagttgacaagatttgtcaggcaatggctctcgctgcc
gaagaacaccacatggacttagctgttgatgctgctaacgaaactggtcgtggggttgct
gaagataaggctatcaagaacatctacgcaagtgaatacatttggaacaacatccgtcac
gataagactgttggtattatcgaagacaatgatgaagaccaaactatcaaaattgctgat
ccacttggtgtcattgccggaattgttccagttactaaccctacttcaacaacgatcttc
aaatcaatcattagtgctaagacacggaatacaatcatcttttctttccaccgtcaagca
atgaagtcatctatcaagactgcaaagattctccaagaagctgctgaaaaagccggtgcg
ccaaagaacatgattcaatggctccctgaaagtacccgcgaaaacactaccgcattactc
caacaccctaatactgctactattttagcaaccggtggtccttcattagttaaggctgcc
tacagttctggtaaccctgctcttggtgttggtcctggtaacggtcctgcttacatcgaa
aaaactgccaacatcgaacgttctgtttacgacatcgttctttctaagacattcgataac
ggtatgatttgtgccactgaaaactcagttgttgttgatgaagaaatctacgacaaggtt
aaagaagaattccaaaagtggaactgttacttcttgaagccaaacgaaattgataaattt
actgatggctttattgacccagatcgtcatcaagttcgtggtccaatcgctggtcgttca
gctaatgctattgctgacatgtgtggtattaaagtacctgacaacactaaggttatcatt
gctgaatacgaaggtgttggtgacaagtacccactttcagctgaaaagctttcaccagta
ttaacaatgtacaaggcaacctctcacgaaaatgcctttgatatctgtgctcaattatta
cactacggtggtgaaggtcacactgctgctattcacacccttgatgatgatttagctact
aagtacggtcttgaaatgcgtgcttcacggatcattgttaactccccatctggtattggt
ggtattggtaacatctacaacaacatgactccatcccttactttaggtactggttcatac
ggtagtaactcaatttctcacaacgttactgattgggacctcttaaacatcaaaacaatt
gcaaagcggcgtgaaaaccgtcaatgggttaagattcccccaaaagtatactttcaacgc
aactcactaaaagaattgcaagatattccaaacattaaccgggcattcatcgttactggt
cctggaatgagcaagcgtggttacgttcaacgtgttatcgatcaattgcgtcaacgccaa
aacaacactgctttcttagtatttgatgacgttgaagaagatccatcaacaaacactgtt
gaaaaaggtgttgccatgatgaatgacttcaaacctgatacaattattgctcttggtggt
ggttcaccaatggatgctgctaaggctatgtggatgttctatgagcacccagaaacttca
tggtatggggttatgcaaaagtaccttgatattcggaagcgtgcttaccaaatcaagaag
cctactaagtctcaacttattggtatccctactacatcaggtactggttcagaagttact
ccatttgcggttattaccgattcaaaaactcatgttaagtacccacttgctgactacgcc
ttaacaccaaacattgcaatcgttgactcacaattcgttgaaactgttccagcaaaaact
actgcttggactggactagatgttttatgtcacgctactgaatcatatgtttctgttatg
gcaactgactacactcgtggttggtcactacaaaccatcaagggtgttatggaaaacctt
cctaagtcagttcaaggtgataagttagctcgtcgtaagatgcacgacttctcaacaatg
gccgggatggcatttggtcaagccttcttaggaattaaccactcccttgcccacaagatg
ggtggagcattcggtcttcctcacggtttgcttatcgctattgcaatgccacaagtaatt
cgctttaacgcaaaacgtccacaaaagcttgctctctggcctcactatgagacttaccat
gcaactaaggactacgctgacattgcacggttcattggtttgaaaggcaacactgatgaa
gaattagctgaagcatatgctaagaaagttatcgaacttgctcacgaatgtggtgttaag
cttagtcttaaggacaatggtgttacacgtgaagaatttgataaggcggttgacgatctt
gctcgcttagcttacgaagatcaatgtactactactaacccagttgaaccacttgttagc
caactcaaggaattacttgaacgttgctacgatggtactggcgttgaagaaaaataa

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