KEGG   Pseudomonas sp. MT-1: MT1_3504
Entry
MT1_3504          CDS       T10396                                 
Name
(GenBank) bifunctional prolinedehydrogenase/pyrroline-5-carboxylate dehydrogenase
  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
psmt  Pseudomonas sp. MT-1
Pathway
psmt00250  Alanine, aspartate and glutamate metabolism
psmt00330  Arginine and proline metabolism
psmt01100  Metabolic pathways
psmt01110  Biosynthesis of secondary metabolites
Module
psmt_M00970  Proline degradation, proline => glutamate
Brite
KEGG Orthology (KO) [BR:psmt00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00250 Alanine, aspartate and glutamate metabolism
    MT1_3504
   00330 Arginine and proline metabolism
    MT1_3504
 09180 Brite Hierarchies
  09182 Protein families: genetic information processing
   03000 Transcription factors [BR:psmt03000]
    MT1_3504
Enzymes [BR:psmt01000]
 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
     MT1_3504
  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
     MT1_3504
Transcription factors [BR:psmt03000]
 Prokaryotic type
  Ribbon-helix-helix
   Other families
    MT1_3504
SSDB
Motif
Pfam: Aldedh Pro_dh Pro_dh-DNA_bdg PRODH DUF7674
Other DBs
NCBI-ProteinID: BAP80679
LinkDB
Position
complement(3873381..3876542)
AA seq 1053 aa
MFKAGQVLQGDFANLKAAEFFPAISANYSVDEAAYLNELLQLADPGEAGIEAIRREARSL
IEAVRGRDNAVDTLDALLRQYSLDTHEGLMLMCLAEALLRVPDSATADALIRDKLNAAEW
ERHLGQSDNVLVNFAAWGLVMTGKVVDPDNSDGRPKNVIGRLVKRSGEPVIRAAMNQAMK
LMGKQFVLGRTISEALKNGRPEREKGYTYSFDMLGEAALTTEDARKYMADYRQAVETVGA
EPQVGPGPRPSVSIKLSALHPRYEVAQRERVLTELFESVRELAILARRLDVGITIDAEEA
DRLELSLELYEKLMRDPAIAGWGEFGLVIQAYSKRCLPVLVWLTLLGKELNARIPLRLVK
GAYWDSEIKQCQVQGLDGYPVFTRKEGTDTSYLACARYLLSEHTRGVIYPQFASHNAHTV
SCILSMVGELKTPREFEFQRLHGMGDALYDTVIEKYRKNVRIYAPVGAHKDLLPYLVRRL
LENGANSSFVHQLVDPRVPVETLIDHPVTQLRQFKTLGNHRIPLPPALYGNRTNSQGINM
NIQTQWNELSSAYQTFLDRQWQAAPVIGGQTLTGSAHKVHCPYQLSQEVGTAQFATAEQA
KQAIDGLSAFWPRWNATPIEQRAQILERLGDLLEANRAELMAMCTLEAGKTLQDGIDEVR
EAVDFCRYYALQARLKLGREELKGPTGERNELFHEGRGVFVCISPWNFPLAIYLGQITAA
LVAGNTVLAKPAEQTSLIAARALELMFEAGLPKEAIAFLPGDGATLGGVFCRDPRVVGVC
FTGSTDTARIINRQLAEKEGAIATLIAETGGQNAMIVDSTALPEQVVKDAVGSAFTSAGQ
RCSALRVLYVQRDIADRVIELIKGAMDQLKIGPTHLRENDLGPVIDAEAREGLLAHIQQL
KAEGKLIAEAKLPGSLNGHFVAPVAFEIGGIHELKKEQFGPVLHVVRFDAADLEKVVADI
NATGYGLTLGIHSRNEETAARIEALARVGNLYVNRNQVGAVVGVQPFGGCGLSGTGPKAG
GPSYLLRFVNERTTSTNTTAVGGNASLLSLGDD
NT seq 3162 nt   +upstreamnt  +downstreamnt
atgttcaaagccggtcaagtcttgcagggcgatttcgccaatctgaaagccgccgaattc
ttccccgccatcagcgccaactacagcgttgacgaggcggcctacctgaacgagctgttg
caactggccgatcccggcgaggcaggcatcgaagccattcgccgcgaagcgcgcagcctg
atcgaagccgttcgcggccgtgataacgccgtcgacacccttgatgcactgctgcgccag
tacagcctggatacgcatgaaggcctgatgctgatgtgtctggctgaagcgcttctgcgt
gtgccggattcggccacggccgacgcgctgatccgcgacaagctcaacgccgccgagtgg
gaacgccacctcggacagagcgacaacgtgctggtcaatttcgcggcctggggactggtg
atgacgggcaaggtggtcgacccggacaattccgacggtcgcccgaagaatgtcattggc
cggctggtcaaacgctccggcgagccggtgatccgcgccgcgatgaatcaggcgatgaag
ctgatgggcaagcagttcgtgcttggccggaccatctccgaagccttgaagaacggccgt
cccgagcgcgagaagggctacacctattctttcgacatgctcggcgaagcggcgctgacc
accgaagatgcgcgcaagtacatggctgactaccggcaggctgtggaaaccgtcggcgcc
gagccgcaggtcggtccgggaccgcgtccttcggtgtcgatcaagctgtccgcgctgcac
ccgcgttatgaagtggctcaacgtgagcgcgtgctcaccgaactgttcgaaagcgttcgc
gagctggcgatactggcgcgccgcctggatgtcggtatcaccatcgacgcggaggaggcc
gatcgtctcgagctctcgctggaactgtacgaaaaactgatgcgcgacccggccatcgcc
ggctggggcgagttcggcctggtgatccaggcgtattccaagcgctgcctgccggtactg
gtctggctgaccctgttgggtaaagagctgaacgcgcgtatcccgctacgtctggtgaag
ggcgcctattgggacagcgaaatcaagcagtgtcaggttcagggcctggacggctatccg
gtcttcacccgcaaggaaggcaccgatacctcctatctggcctgcgcgcgctacctgttg
tccgagcacacccgcggcgtgatctacccgcagttcgccagccacaacgcgcacaccgtg
agctgcatcctgtcgatggtcggcgagttgaagacgccgcgcgagttcgaattccagcgc
ctgcacggcatgggcgacgcgctctacgacacggtgatcgaaaagtaccgcaagaacgta
cgcatctacgcgccggtcggtgcccacaaggacctgctgccgtatctggtgcgtcgtctg
ctggaaaacggcgccaactcatcgttcgttcaccagctggtcgacccgcgcgtgccggtc
gaaaccctgatagaccacccggtcacccagctgcgtcagttcaagaccctcggcaaccat
cgcatcccgcttccgccggcgctgtacggcaaccggaccaactcgcaaggcatcaacatg
aacatccagactcagtggaacgaactgtccagcgcctaccaaacgtttctcgaccgtcag
tggcaggccgccccggtgattggtgggcagacgcttaccggcagcgcgcacaaggtgcat
tgcccgtatcagctcagccaggaagtaggcaccgcccagttcgccactgccgagcaagcc
aagcaggccatcgatggtctgtctgccttctggccgcgttggaacgcgacgccgatcgag
caacgtgcgcagatcctcgagcgtcttggtgatctgctggaggccaaccgcgccgagctg
atggccatgtgcacgctggaagccggcaaaaccctgcaggacggcattgacgaagtccgc
gaggcggtcgatttctgccgttactacgcgctgcaagcccgcctgaaacttggccgcgaa
gaactcaaaggtccgaccggcgagcgtaacgagctgttccatgaagggcgcggcgtgttc
gtctgcatcagcccctggaacttcccgctggcgatttacctcggccagatcaccgcagct
ctggtcgccggtaataccgtgctggccaagccggccgagcagaccagcctgatcgccgcc
cgtgcgctggagctgatgttcgaagctggcctgccgaaggaggcgatcgccttcctgccg
ggtgacggtgcaaccctcggcggcgtgttctgccgcgacccgcgtgtggtcggtgtgtgc
ttcaccggctccaccgacactgcgcgcatcatcaaccgccagctggccgagaaggagggc
gccatcgccaccctgatcgccgaaaccggtggccagaacgcaatgatcgtcgactccacc
gcgctgcctgagcaggtggtcaaggatgcggtcggttccgccttcaccagcgccggtcag
cgctgctcggcgctgcgtgtgctctacgttcagcgcgacattgccgatcgtgtcatcgag
ctgatcaaaggtgcgatggatcagctaaaaatcggcccgacccacctgcgcgaaaatgac
ctgggcccggtgatcgacgccgaagcccgcgaaggcctgttggcgcacatccagcagctc
aaggcagaaggcaagttgatcgccgaagccaaactgccgggcagcctcaacggtcacttc
gtcgcgcctgtggcgttcgaaatcggcgggattcacgagctgaaaaaagagcaattcggc
cctgtattgcacgtggtgcgcttcgatgcggcggatctggagaaggtcgtcgccgacatc
aacgccaccggctacggcctgaccctcggtatccacagccgcaacgaggaaaccgcagcc
cgcatcgaagcgctggcgcgggtcggcaacctctacgtcaaccgtaaccaggtcggcgcg
gtggttggcgtgcagccgttcggtggctgtggcctgtccggtactggcccgaaagccggt
ggcccgagctacctgctgcgcttcgtcaacgaacgcaccacctccaccaacacgaccgcg
gtcggcgggaacgcgtccttgctgtcgctgggcgacgactga

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