Microbacterium suwonense: GCM10025863_13310
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Entry
GCM10025863_13310 CDS
T09270
Symbol
kgd
Name
(GenBank) alpha-ketoglutarate decarboxylase
KO
K01616
multifunctional 2-oxoglutarate metabolism enzyme [EC:
2.2.1.5
4.1.1.71
1.2.4.2
2.3.1.61
]
Organism
msuw
Microbacterium suwonense
Pathway
msuw00020
Citrate cycle (TCA cycle)
msuw00630
Glyoxylate and dicarboxylate metabolism
msuw00785
Lipoic acid metabolism
msuw01100
Metabolic pathways
msuw01110
Biosynthesis of secondary metabolites
msuw01120
Microbial metabolism in diverse environments
msuw01200
Carbon metabolism
msuw01210
2-Oxocarboxylic acid metabolism
Module
msuw_M00009
Citrate cycle (TCA cycle, Krebs cycle)
msuw_M00011
Citrate cycle, second carbon oxidation, 2-oxoglutarate => oxaloacetate
Brite
KEGG Orthology (KO) [BR:
msuw00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
GCM10025863_13310 (kgd)
00630 Glyoxylate and dicarboxylate metabolism
GCM10025863_13310 (kgd)
09108 Metabolism of cofactors and vitamins
00785 Lipoic acid metabolism
GCM10025863_13310 (kgd)
Enzymes [BR:
msuw01000
]
1. Oxidoreductases
1.2 Acting on the aldehyde or oxo group of donors
1.2.4 With a disulfide as acceptor
1.2.4.2 oxoglutarate dehydrogenase (succinyl-transferring)
GCM10025863_13310 (kgd)
2. Transferases
2.2 Transferring aldehyde or ketonic groups
2.2.1 Transketolases and transaldolases
2.2.1.5 2-hydroxy-3-oxoadipate synthase
GCM10025863_13310 (kgd)
2.3 Acyltransferases
2.3.1 Transferring groups other than aminoacyl groups
2.3.1.61 dihydrolipoyllysine-residue succinyltransferase
GCM10025863_13310 (kgd)
4. Lyases
4.1 Carbon-carbon lyases
4.1.1 Carboxy-lyases
4.1.1.71 2-oxoglutarate decarboxylase
GCM10025863_13310 (kgd)
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Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
2-oxoacid_dh
E1_dh
Transket_pyr
OxoGdeHyase_C
2-oxogl_dehyd_N
SHOCT
Motif
Other DBs
NCBI-ProteinID:
BDZ38717
LinkDB
All DBs
Position
1238000..1241617
Genome browser
AA seq
1205 aa
AA seq
DB search
MDELYEQFKQDRDSVDKEWWPILENYTPDSTSPSQNAAVQSTSEQTASPVTAPIPVIGSQ
VRARTTTKPAKQAPIPAQAPKPQAKEDNGETASADDEDKVTPLRGMPKTLAANMDQSLTV
PTATSARTVPAKLMIDNRIVINNHMSRTRGGKVSFTHLIGWALIQTLKEFPSQNVFYAEV
DGKPSVVAPAHVNLGIAVDVPKPDGTRALLVPSIKRADTLSFSEYLAAYEDIIARARANK
LTAADFAGTTISLTNPGGIGTVHSVPRLMKGQGCIIGAGALNYPAEFQGSSERTLTGLGI
GKVITLTSTYDHRVIQGAGSGEFLKKVHELLIGERGFYDDIFAALRIPYQPIRWNSDIAV
DLAERVDKQSRVQELINSYRVRGHLMADIDPLEYVQRSHPDLEIESHGLTFWDLDREFVT
GGFGGKRVMKLRDILGVLRDSYCRTLGIEYMHIQDPEQRRWFQEKLEVKYVKPGHNEQLR
VLSKLNEAEAFETFLQTKFVGQKRFSLEGGESLIPLLDEILQGAANAGMDGAAIGMAHRG
RLNVLTNIAGKTYGQVFREFEGSLTPGNQRGSGDVKYHLGTEGTFIAEDGAELPIYLAAN
PSHLETVDGVLEGIVRAKQDRKPIGTFAWLPILVHGDAAFAGQGVVVETLQMSQLRGYRT
GGTVHIVVNNQVGFTTLPTDSRTSVYATDVAKTIQAPIFHVNGDDPESVIHVAQLAFEYR
ERFHSDVVIDLVCYRRRGHNEGDDPSMTQPLMTDLIQAKRSVRKLYTEALVGRGDITQEE
YDQAKADFQARLEVAFAETHAAETGATPIAPELNQVDSQVGSPDFTGVPLEVVHLIGDAH
ANKPDGFTVHSKLQQQLDKRVTMSREGGIDWGFGELLAFGSLLVEGTPVRLAGQDSRRGT
FVQRHAVLHDRNNGQEWLPLTNLSDNQGRFFVYDSLLSEYAALGFEYGYSVENTEALVLW
EAQFGDFVNGAQSVIDEYVSAAEQKWGQQSGLVMLLPHGYEGQGPDHSSARMERFLQLCA
QENMIVARPSTPASYFHLLRRQAYARPRKPLIVFTPKAMLRLRGATSQVEDFTKGRFEPV
IDDDRALDRDAVKRVLVHSGKIHWDLVNELDKNPNAEIALVRLEQFYPTPIDALKAITDS
YPNAELVWVQDEPENQGRGRSSPSSSPRFPATVSSARSRGRPPPHRRPDPRRCTRSSRPH
CSSRP
NT seq
3618 nt
NT seq
+upstream
nt +downstream
nt
gtggacgagctgtacgagcagttcaagcaggaccgcgactcggtggacaaggagtggtgg
ccgattctggagaactacacgccggattccacctccccgtcccagaacgccgccgtgcag
agcacctccgagcagaccgccagccccgtcaccgcgccgatccccgtaatcggctcgcag
gtgcgggcacgcaccacgaccaagcccgcgaagcaggcgccgatccccgcccaggcgccc
aagccgcaggccaaggaggacaacggcgagacggcgtccgccgacgacgaagacaaggtc
acaccgctgcgcggcatgcccaagacgctcgcggccaacatggaccagtcgctgacggtg
ccgacggccaccagcgcacgtaccgtgccggccaagctgatgatcgacaaccgcatcgtc
atcaacaaccacatgtcccgcacgcgcggcggcaaggtgagcttcacccatctgatcggc
tgggctctgatccagacgctcaaggagttccccagccagaacgtgttctatgcggaggtc
gacggcaagccctccgtcgtcgcccccgcgcacgtcaacctcggcatcgcggtcgatgtc
cccaagcccgacggcacccgcgctctgctggtgccgagcatcaagcgggccgacacgctg
tcgttcagcgagtacctcgccgcctacgaggacatcatcgcccgcgcacgcgccaacaag
ctcaccgccgccgatttcgccggcaccacgatctcgctcaccaaccccggtgggatcgga
accgtgcactcggtgccccgtctgatgaagggccagggctgcatcatcggcgcgggcgcg
ctgaactaccccgccgagttccagggctccagcgagcggaccctcaccgggctgggcatc
ggcaaggtcatcacgctgaccagcacctacgaccaccgcgtcatccagggagccggttcc
ggtgagttcctgaagaaggtgcacgagctgctgatcggcgagcgcggcttctacgacgac
atcttcgcggccctgcgcatcccgtaccaaccgatccgctggaactccgacatcgcggtc
gacctcgccgaacgcgtcgacaagcagtcccgggttcaggagctgatcaactcctaccgc
gtgcgcggccacctgatggccgacatcgacccgctcgagtatgtgcagcgctcgcacccc
gacctcgagatcgagagccacgggctgacgttctgggacctggatcgcgagttcgtcacc
ggcggcttcggcggcaagcgggtgatgaagctgcgcgacatcctcggcgtgctgcgcgat
tcgtactgccgcactctcggcatcgagtacatgcacatccaggatccagagcagcgccgc
tggttccaggagaagctcgaggtcaaatacgtcaagcccggccacaacgagcagctgcgc
gtgctgagcaagctcaacgaggcagaggcgttcgagaccttcctgcagacgaagttcgtc
gggcagaagcgcttctcgctggagggcggcgaatcgctgatcccgctgctcgacgagatc
cttcagggcgccgccaacgccggaatggacggcgcggcgatcgggatggcgcaccgcgga
cggctgaacgtgctcaccaacatcgccggcaagacctatggacaggtgttccgcgagttc
gagggctcgctgacaccgggcaaccagcgcggctcgggcgatgtgaagtaccacctgggc
acagagggaaccttcatcgccgaggacggcgcggagctgccgatctacctcgcggccaac
ccgtcccacctggagaccgtcgacggcgtgctcgaggggatcgtgcgcgccaagcaggac
cgcaagccgatcggcaccttcgcctggctgccgatcctggtgcacggagacgccgccttc
gcaggacagggcgtcgtcgtcgagacgctgcagatgtcgcagctgcgcggctaccgcacc
ggcggcaccgtgcatatcgtcgtgaacaaccaggtcggattcacgaccctgcccaccgat
tcgcgcacctcggtgtacgcgacggacgtcgccaagaccatccaggcgccgatcttccac
gtgaacggcgatgatcccgagtcggtcatccacgtcgcccagctggccttcgaataccgc
gagcgattccacagcgatgtcgtgatcgacctggtctgctaccgtcgccgcggtcacaac
gagggcgatgacccctcgatgacccagccgctgatgaccgacctgatccaggccaagcgc
tcggtgcgcaagctgtacaccgaggccctggtgggacgcggtgacatcacccaggaggag
tacgaccaggccaaggccgacttccaggcccgcctggaggtcgccttcgccgagacgcat
gccgccgagaccggggccaccccgatcgcacccgagctgaaccaggtcgacagccaggtc
ggctcccccgacttcaccggcgtgccgctggaggtcgtgcacctgatcggcgatgcacac
gccaacaagcccgatggcttcaccgtgcacagcaagctgcagcagcagctcgacaagcgc
gtcaccatgagccgcgagggcggcatcgactggggcttcggagagctgctggcgttcggc
tcactgctcgtcgagggcaccccggtgcgcctggccggccaggactcgcgccgcggcacc
ttcgtgcagcgccacgctgtgctgcacgatcgcaacaacggtcaggaatggctgccgctg
accaacctctccgacaaccaggggcgcttcttcgtgtacgactcgctgctcagcgagtat
gcggcactgggcttcgagtacggctactcggtggagaacaccgaggcgctggtgctctgg
gaggcgcagttcggcgacttcgtcaacggcgcgcagtcggtcatcgacgagtacgtctcg
gccgccgagcagaagtggggccagcagtccggcctggtgatgctgctgccgcacggctac
gagggccagggacccgatcactcctccgcgcgcatggagcgcttcctgcagctgtgcgcg
caggagaacatgatcgtcgcccgtccgtcgacgccggcctcctacttccacctgctgcgt
cgtcaggcgtacgcgcgtccgcgcaagccgctgatcgtcttcacaccgaaggcgatgctg
cgtctgcgcggggcgaccagccaggtcgaggacttcacgaagggtcgcttcgagccggtc
atcgatgatgatcgcgctctcgatcgcgatgcggtcaagcgcgtgctcgtgcactcgggc
aagatccactgggatctggtcaacgagctggacaagaacccgaacgccgagatcgcgctg
gtgcgcctcgagcagttctaccccaccccgatcgatgcgctgaaggcgatcaccgactcg
tacccgaatgccgagctggtctgggtgcaggacgagcccgagaaccaggggcgtggccgt
tcctcgccctcgagttcgccgaggttcccggcgaccgtcagttccgcgcgatctcgcggc
cggccgccgcctcaccggcgaccggatcctcgaaggtgcacgcggtcgagcaggccgcac
tgctcaagcaggccctga
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