KEGG   Vibrio europaeus: IXK98_05830
Entry
IXK98_05830       CDS       T07114                                 
Symbol
putA
Name
(GenBank) bifunctional proline dehydrogenase/L-glutamate gamma-semialdehyde dehydrogenase PutA
  KO
K13821  RHH-type transcriptional regulator, proline utilization regulon repressor / proline dehydrogenase / delta 1-pyrroline-5-carboxylate dehydrogenase [EC:1.5.5.2 1.2.1.88]
Organism
veu  Vibrio europaeus
Pathway
veu00250  Alanine, aspartate and glutamate metabolism
veu00330  Arginine and proline metabolism
veu01100  Metabolic pathways
veu01110  Biosynthesis of secondary metabolites
Module
veu_M00970  Proline degradation, proline => glutamate
Brite
KEGG Orthology (KO) [BR:veu00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00250 Alanine, aspartate and glutamate metabolism
    IXK98_05830 (putA)
   00330 Arginine and proline metabolism
    IXK98_05830 (putA)
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03000 Transcription factors [BR:veu03000]
    IXK98_05830 (putA)
Enzymes [BR:veu01000]
 1. Oxidoreductases
  1.2  Acting on the aldehyde or oxo group of donors
   1.2.1  With NAD+ or NADP+ as acceptor
    1.2.1.88  L-glutamate gamma-semialdehyde dehydrogenase
     IXK98_05830 (putA)
  1.5  Acting on the CH-NH group of donors
   1.5.5  With a quinone or similar compound as acceptor
    1.5.5.2  proline dehydrogenase
     IXK98_05830 (putA)
Transcription factors [BR:veu03000]
 Prokaryotic type
  Ribbon-helix-helix
   Other families
    IXK98_05830 (putA)
SSDB
Motif
Pfam: Aldedh Pro_dh Pro_dh-DNA_bdg PRODH DUF6415
Other DBs
NCBI-ProteinID: QPG33645
LinkDB
Position
2:1252007..1255126
AA seq 1039 aa
MFTATDVLNAEFVEQPLNKLWSLISPLYMVDESQWLNQLLPLAMPSDGEKEQIAAKTTQL
IEAIRADKKSIQMIDALLLEYSLDTQEGILLMCLAEALMRIPDSATADALIRDKLTVADW
KSHLKNSDSVFVNASTWGLMLTGKVVGLSENESQSPVSAVNRLVNKMSEPVIRKAMHQAM
KVMGHQFVLGRSIAEAQKNGRPMRDKGFTYSYDMLGEAALTTADANKYFKDYLMAIEAVG
RDNYGLDTSPAPSVSIKLSALHPRYEVANEERVLTELYDTLQQLLRRAVELDVAITIDAE
EADRLELSLKLFEKVYRSELVKGWGKFGLVIQAYSKRALPVLVWINGLAKEQGDLIPLRL
VKGAYWDSEIKWSQQAGYTNYPVYTRKEATDVAYLACARFLLSDNVRGKIFPQFASHNAQ
TVTSIAVMAEHKDFEFQRLHGMGDSLYNHAMEAYQQSVRIYAPVGSHKDLLPYLVRRLLE
NGANSSFVHRLVDARCPVETLTEHPVDMLNAFETLNNTSIPLPTDVFPERKNSLGVNVDI
ESEAKPFEHEVESFLNKNWTAGPIINGEFLAESMIKENINTESVTAPYDRRIHVGQVAFA
TLDHVSAAIDGAEQAFSAWQSSPKSQRAEKLDTLADLLEEHLAELVAICHQEAGKTIHDS
IDEVREAVDFCRYYAKQVDALGELAVKGFDGQSRVVTRQGRGVFVCISPWNFPLAIFLGQ
IAAALVSGNTVVAKPAEQTSLIAARAVELMLDAGFPAGTIQLLPGRGAEIGSALTSHSAI
AGVAFTGSTVTAQRINQTLAERDAAPVPFIAETGGQNAMIVDSTALPEQVVRDVIRSAFA
SAGQRCSALRVLYVQEDIADRIVALIQGAMQELSVGKPYLHSTDVGPVIDNTAKTKLLQH
IEQMSSSEKKVAQLALSEEHEHGDFVAPTAFEIGDISCLKEEQFGPILHIVRFKASELHQ
IVDQINTTGFGLTMGIHSRNETTYRWIEKHARVGNCYINRDQVGAVVGVQPFGGQGLSGT
GPKAGGPHYLYRFTQTQFS
NT seq 3120 nt   +upstreamnt  +downstreamnt
atgtttacagcgactgacgtgttaaatgctgagtttgttgagcaaccgcttaacaagctt
tggtcgttgatctctccactatacatggtggatgaatcacaatggcttaatcaattgttg
ccattagcaatgccaagcgatggcgaaaaagaacaaattgcggctaagacgacccaactt
attgaagcgatacgagcggataaaaagtcgattcagatgatcgatgcgctactgcttgaa
tacagccttgatacgcaagaaggtatcttgctgatgtgcttagcagaagcgttgatgcgt
atcccagattcagcaacggctgacgcactgattcgagacaaactgacagttgcggattgg
aaatctcaccttaagaattcagactctgtgtttgttaatgcctcgacatggggattaatg
ttgacaggcaaagtcgttggactttctgaaaacgaatctcagagtccagtgagtgcggtt
aaccgcctagtgaacaaaatgtctgagcctgtgatccgtaaagcgatgcaccaggcgatg
aaagtgatggggcaccaatttgtacttggacgcagcattgctgaagcgcaaaaaaatggt
cgcccaatgcgcgacaaaggctttacctattcttatgacatgttaggtgaagcggcactc
acaaccgctgacgcgaacaagtatttcaaagattacctcatggcgattgaagccgtagga
cgtgacaattacggattggatactagccctgcgccatcggtttcgatcaagctatctgca
cttcatccacgttacgaagttgccaatgaagagcgcgtgttgactgagctctatgatacg
ctgcagcagttacttcgccgagcggttgagcttgatgtcgcgattaccattgatgcagaa
gaagcagacagacttgagctctctctaaaactgtttgagaaagtgtatcgcagcgaactt
gtcaaaggctgggggaaatttggcttggtgattcaagcctactcgaaacgtgctttgcct
gttctagtttggatcaatggtctagcaaaagaacagggtgacttgattccacttcgtctt
gtaaaaggtgcttactgggacagtgaaatcaagtggtcacaacaagcgggttacactaac
tatccagtttatacccgcaaagaagcgacagacgtagcttatcttgcctgcgcgcgcttc
ctactgagcgacaatgttcgcggtaaaattttcccacagtttgctagccacaatgctcag
acggtgacttcaattgcggtcatggcagagcacaaagattttgagttccaacgtctgcac
ggtatgggagattctctatacaaccacgcgatggaagcctaccaacagtcagttcgtatt
tatgcgccagttggtagccataaagacctgcttccttacctggtgcgtcgattactagaa
aacggtgctaacagctctttcgtacatcgactggtcgatgcacgttgtcctgttgagacg
ctaaccgagcatcctgttgatatgcttaacgcatttgaaacgctgaataacaccagtatt
ccactgccaactgacgtgttccctgagcgtaaaaactcgcttggcgtcaacgttgatatt
gaaagtgaagcaaagccgtttgagcacgaagtagaaagtttcttgaacaaaaactggacg
gcaggaccgatcattaatggtgagtttcttgccgaaagcatgatcaaggaaaacatcaac
actgaatcagtaacggcgccttacgacagacgtatccatgttggtcaggtggcttttgct
acccttgatcatgtttccgctgccattgacggtgctgagcaagcatttagtgcatggcaa
tcgagtccgaaatctcaacgtgctgaaaaactggataccttagctgacctacttgaagag
cacttagcagaactggttgctatctgtcatcaagaggcaggtaagacgattcatgacagt
attgatgaagttcgtgaagcggtagacttctgtcgttactacgctaaacaagtcgatgca
cttggcgaactcgcagtgaaaggctttgatggtcaaagtcgcgttgttactcgtcaagga
cgtggtgtctttgtttgtattagcccttggaacttcccgttggcgattttccttggacaa
attgccgcagcgcttgtttctgggaacacagtggttgctaagcctgcggagcaaactagc
ctaatcgcagctcgcgctgtagaacttatgctagatgcaggtttcccggcaggcacaatc
caactccttcctgggcgtggcgctgaaattggctcagcattgacctctcactctgcaatt
gcaggtgtcgcgtttacaggctcaaccgtaaccgcgcagagaatcaaccaaaccttggcc
gagcgtgatgcagcgccagtaccgtttatcgctgaaactggcggtcaaaatgcgatgatc
gttgatagtactgcgctacctgagcaagtggttcgtgacgttatccgctctgcattcgct
tcagcgggtcagcgctgtagtgcactgcgcgttctctatgttcaggaagatatcgccgat
cgtattgtcgcccttatccaaggtgcgatgcaggaattgagtgtaggcaaaccttatctt
cattctactgatgtcggccctgttatcgacaacacggctaaaacgaaactgcttcagcac
attgagcaaatgagcagcagtgaaaagaaagtcgctcagcttgcgttgtctgaagagcat
gaacacggtgactttgtagctcctactgcttttgagattggtgatatctcttgccttaaa
gaagagcagtttgggcctatcttgcatatcgttcgtttcaaagcgagtgagttgcaccag
attgttgaccagatcaacaccactggatttggtttgacgatgggcattcacagccgtaac
gaaacgacctatcgctggatcgaaaagcacgctcgcgtaggtaactgttacatcaaccga
gatcaagttggtgctgtggttggcgttcagccgtttggtgggcaaggtttatctggcacg
ggtcctaaagcgggcggtccacactacttgtaccgttttacccaaacacaattttcttaa

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