KEGG   Photorhabdus laumondii subsp. laumondii TTO1: plu2626
Entry
plu2626           CDS       T00149                                 
Name
(GenBank) unnamed protein product; Similar to putative oxidase YdiJ of Escherichia coli
  KO
K26063  (R)-2-hydroxyglutarate dehydrogenase [EC:1.1.-.-]
Organism
plu  Photorhabdus laumondii subsp. laumondii TTO1
Pathway
plu00310  Lysine degradation
plu01100  Metabolic pathways
plu01120  Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:plu00001]
 09100 Metabolism
  09105 Amino acid metabolism
   00310 Lysine degradation
    plu2626
SSDB
Motif
Pfam: FAD-oxidase_C FAD_binding_4 Fer4_8 BBE Fer4_20 Fer4_10 Fer4_17 Fer4_18 Fer4_21
Other DBs
NCBI-ProteinID: CAE15000
Pasteur: plu2626
UniProt: Q7N3T7
LinkDB
Position
complement(3071412..3074471)
AA seq 1019 aa
MIPRISQAPHVSEVAQKFLDTLKEQGFTGDVASSYADRLTMATDNSIYQLLPQAIVFPRS
SADVVLLARVAGEKEYQNLTFTPRGGGTGTNGQALNDGIVVDMSRYMNRILEINPAQGWV
RVEAGVIKDQLNQYLRPYGYFFSPELSTSNRATLGGMINTDASGQGSLVYGKTSDHVLSL
RAVLLGGELLDTRAMDIVQAESIAQEDSVTGRIYNTVLSRCREQRELIVEKFPKLNRFLT
GYDLRHVFSDDMRKFDLGRILTGSEGTLAFITEAVLDITPLPKVRRLVNVKYDSFDSALR
NAPFMVEAKALSVETVDSKVLNLAREDIVWHSVKELITDIPNKDMQGLNIVEFSGDDQPL
IDRQVETLCQRLDELMDGNQAGIIGYQICRELADIERIYAMRKKAVGLLGNSKGAAKPIP
FVEDTCVPPQYLADYIVEFRQLLDSHHLNYGMFGHVDAGVLHVRPALDMCDPQQEILMKQ
ISDEIVSLTARYGGLLWGEHGKGFRAEYSPAFFGSILYEELRRIKAAFDPDNRLNPGKIC
PPMGVDAPMMKVDAVKRGTYDRTIPINVRNTFRGAMECNGNGLCFNFDVKSPMCPSMKVS
QQRIHSPKGRATLVREWLRLLTEQGVDPTLLKQGLEQKRPSLRGLIEKTHNSWQAWRGEY
DFSHEVKEAMSGCLACKACSTQCPIKIDVPSFRARFLELYHGRYFRPLRDHIVASAESST
PLMAKVPRVFNFFLKQPWIQELSRRTIGMVDLPLLSSPTLPQQLAGHYALSTTLEQLEKM
EQAHRDEHVLIVQDPFTSYYDAKVVADFAYLVEKLGYKPVLLPFSPNGKAQHIKGFLSRF
TKTAKKTSDFLNRVAELGIPMVGVDPALVLCYRDEYKEILGEQRGKFEVQLVHEWLINTL
PEKSDHEEKSGDKWYLFGHCTEVTMLPGSSQQWGKIFHRLGSKLDNISVGCCGMAGTYGH
ENKNIEHSIGIYKLSWQPALQKLPLERCLSSGYSCRSQVKRIEGQVLKHPLQALLEIIP
NT seq 3060 nt   +upstreamnt  +downstreamnt
atgatcccacgcatatcacaagcaccgcacgtcagtgaggtggcgcagaagttcttggat
acattgaaggaacaaggatttaccggagatgttgccagtagttatgccgatcgtctgaca
atggcgacagataacagtatctatcaactcttaccacaggctatcgttttccctcgatcc
agtgcagatgtggttttactggctcgtgtcgcaggtgaaaaagagtatcagaatttgaca
tttacgccacgcggtggcggtacaggcacaaacggccaggcgcttaatgacggcattgtg
gtggatatgtcccgttatatgaatcgcattcttgagattaacccggcgcaaggttgggtc
agagttgaggcgggggtgattaaagaccaactgaatcaatatttgcgtccatatggttat
ttcttttcaccggagctttcaaccagtaaccgtgcaacattgggcggcatgattaatact
gacgcatccggtcagggttcattagtctatggtaaaacttctgatcatgttcttagccta
cgggcagttctattagggggggaattacttgacacccgcgctatggatatagtccaggcg
gaatcgattgcgcaagaggattcggttaccggtcgcatttataacacggtgcttagccgc
tgccgtgaacaacgtgaacttatcgttgaaaaattccccaaacttaatcgctttttgacc
ggttatgatttgcgccatgtgttcagtgatgacatgcggaaatttgatttaggtcgtatc
ttaactggttcagaaggaacgctagcttttattaccgaagcggttttggatattaccccg
ttgccaaaagtcaggcgattggtgaatgtgaaatatgattcatttgattctgcactgcgt
aatgctccttttatggtggaggcaaaggcattatcggttgagaccgtggattccaaagtg
ctgaatttggcgcgtgaggatatcgtctggcactcagttaaggaattgataacggatatt
cctaacaaagatatgcaggggttgaatattgttgaattcagtggcgatgatcagcctttg
atagaccggcaagtagaaacactttgccagcgccttgatgaactgatggatggcaatcaa
gctgggattattggttatcaaatttgccgagagttagctgatattgagcgtatttatgca
atgcgcaagaaagcagttggcttgttgggtaacagtaaaggtgcggcgaaacccattcct
tttgtagaagatacgtgtgtaccgccacagtatctcgctgattatattgtggaattccgg
cagctattggatagccatcatcttaattacggtatgtttggtcatgtggatgcgggggtg
ctgcatgttcggccggcgctggatatgtgtgatcctcagcaagagatactgatgaaacag
atttctgatgaaattgtcagtctcaccgcacgttatggtggtttgttgtggggagagcat
ggtaaaggatttcgagctgaatacagcccggcatttttcggtagcatcttgtatgaagaa
ttacgccgaattaaggctgcctttgacccggataaccgtttgaatccgggcaaaatttgt
ccgccgatgggggttgatgcccctatgatgaaagtcgatgctgttaagcgaggaacgtat
gatcggacaattccgataaatgtcaggaatacattccgtggtgctatggagtgtaatggg
aatgggctctgttttaatttcgatgtaaaaagcccgatgtgtccatcaatgaaagtgagt
cagcaacgtatccattcaccgaaaggacgcgcgacactggtgcgtgaatggctgcgtctt
ttaactgaacagggggtagatccgacgttactgaaacagggattagaacaaaaacgacca
agtttgcgtgggttgattgagaagactcacaatagttggcaggcatggcgtggggagtat
gacttttctcacgaagtgaaagaggcaatgtcgggttgtctggcatgcaaagcttgctca
acgcagtgcccgattaaaattgatgttccgtcatttcgtgcacgttttcttgagttatat
catggccgctattttcgccctttacgtgatcatattgtggcgagtgcggaaagcagtaca
ccattaatggctaaggtccctcgggtcttcaatttcttcctgaaacaaccgtggatacaa
gaattgagtcgccggactatcggcatggtggatttacccttgttatccagcccgacgctg
ccccaacaactggcgggtcattatgcactttcgaccacactggaacagcttgaaaaaatg
gaacaggctcatcgtgacgaacatgtgttgattgttcaggacccgttcacgagctattac
gatgctaaagttgtggctgattttgcctatttggtagaaaaattgggatataaacccgta
ttgctgccattttctccaaacggtaaagcacaacatatcaaaggcttcttatcccgtttt
actaaaacggccaaaaagacgtcagactttctgaaccgggttgcggagttgggtattcca
atggtgggtgttgatccagcgctggtgctgtgctaccgggacgaatataaagaaattttg
ggagaacagcgtggaaagtttgaggttcagcttgttcatgaatggttgattaatacctta
ccggagaaaagtgaccatgaagaaaaatccggtgataaatggtatctatttggacattgt
accgaagtgactatgctaccgggcagtagtcaacaatggggaaaaattttccatcggttg
ggtagcaagctggataatatcagtgtaggctgctgtggcatggccggaacctatggtcat
gaaaacaaaaacatagaacactctattggtatctataagttatcctggcaacctgccttg
cagaaattaccattggagcgttgtttaagctccggttattcctgccgaagtcaggttaag
cggatagaagggcaagtacttaagcatccgttgcaagctttattggagataatcccatga

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