KEGG   Serratia proteamaculans: Spro_4623
Entry
Spro_4623         CDS       T00595                                 
Name
(GenBank) aldehyde dehydrogenase
  KO
K00130  betaine-aldehyde dehydrogenase [EC:1.2.1.8]
Organism
spe  Serratia proteamaculans
Pathway
spe00260  Glycine, serine and threonine metabolism
spe00670  One carbon pool by folate
spe01100  Metabolic pathways
Module
spe_M00555  Betaine biosynthesis, choline => betaine
Brite
KEGG Orthology (KO) [BR:spe00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00260 Glycine, serine and threonine metabolism
    Spro_4623
  09108 Metabolism of cofactors and vitamins
   00670 One carbon pool by folate
    Spro_4623
Enzymes [BR:spe01000]
 1. Oxidoreductases
  1.2  Acting on the aldehyde or oxo group of donors
   1.2.1  With NAD+ or NADP+ as acceptor
    1.2.1.8  betaine-aldehyde dehydrogenase
     Spro_4623
SSDB
Motif
Pfam: Aldedh LuxC
Other DBs
NCBI-ProteinID: ABV43716
UniProt: A8GKS6
LinkDB
Position
5098905..5100395
AA seq 496 aa
MQTGDQTHSARPKALHWIDGQWQDSTKQGISISPADGSELGEFADGGTEEAAMAIAAAQR
AFVPAWSRDRQLRARCLNQMADRFEQHAETLARILAQDNGKPLSEARFEVQFIPSKLRYA
AALALTTYGRAMEIQPGALSRVLYEPLGVVGVITPWNSPAILTIRSLAPALAAGNTVVIK
LPAQTAQVNAAFARILAEVDSLPQGVVNLFTESGSEGAMLLVSSPAVPGISFTGSTRTGR
TLAANAMQRVKRISLELGGKTPHLLFEDADLDRALPMIVRSLTTFSGQFCVTGSRLLVQR
AIYPQVKARMAALLEAVKIGPSLEAGVELGPLIDQQSVLRVDAMVTAALAQGAKAVVRGG
PVVEGPLAKGAFYRPTLLEVPNSDMDIVQQEVFGPVLTLEAFDDEAQAIASANHNDYGLA
ASIWSMDANRPHRVAREIQAGSVWINDWAQIHDEFEEGGYKQSGLGRLNGIASLDSFIEY
KHVYQNVGVTDPQRND
NT seq 1491 nt   +upstreamnt  +downstreamnt
atgcagacaggtgaccagacccactcagccaggccaaaagcactgcactggatcgatggc
caatggcaggactcgaccaaacaaggcatcagtatcagcccggcggatggctccgaactg
ggagaatttgccgacggcggcaccgaggaagccgcgatggcgattgccgccgcccaacgc
gcatttgtgccggcatggagccgcgaccgacagctgcgggcccgctgcctgaatcaaatg
gccgatcgatttgagcagcatgcagaaaccctggcccggatcctggcgcaggacaacggt
aaaccgctgagcgaagcccgctttgaggttcagttcattcccagcaaactacgctacgcc
gccgcactggcactgaccacttacgggcgtgccatggagatccagcccggcgccttatcc
cgggtgctgtacgagccgctgggcgtggtcggggtgatcactccgtggaactcaccggcc
attcttaccatcagatcgctggccccggcgttggccgcgggcaataccgtcgtcatcaaa
cttccggctcagaccgcccaggttaacgccgcattcgcccgcattctggccgaagtcgac
agcctgccgcagggggtggtgaacctgttcaccgaaagcggcagcgaaggtgccatgttg
ctggtcagcagcccagcagtcccgggcatcagttttaccggcagcacccgcaccggacgc
acattggcggccaacgccatgcagcgggtcaaacgcatctcgctggaattaggtggaaaa
acgccgcacctgctgttcgaagacgccgacctggatcgcgccttgccgatgatcgtgcgt
tcactcaccaccttcagcggtcaattctgtgttaccggcagccgtttactggtgcagcgc
gcgatctatccgcaggttaaagcccgcatggccgccttgctggaggcggtaaaaatcggg
ccgtcgctggaggcgggcgttgagttggggccgttgatcgaccaacaaagcgtcctgcgg
gtcgatgccatggtcactgccgcgctggcccaaggggccaaggccgtggttcgcggtgga
ccggtagtggaaggccccctggccaaaggcgcgttctaccggccgaccctgctggaagtg
cccaacagcgatatggacattgtgcagcaggaggttttcggcccggtgctcacgctggag
gcctttgacgacgaagcgcaagcgatcgcctccgccaatcataacgactacgggttggcc
gccagtatctggtcgatggatgccaaccgcccgcaccgggtagcgcgggaaattcaggcc
ggcagcgtgtggatcaacgactgggcgcaaattcacgatgagttcgaagaaggtggatac
aagcagagcggcctggggcgtttgaacggtatcgcctcgctggacagctttatcgaatac
aaacacgtctatcaaaatgtgggggtcaccgacccgcagaggaatgactaa

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