Burkholderia mallei NCTC 10247: BM44_3367
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Entry
BM44_3367 CDS
T03524
Symbol
dxs
Name
(GenBank) 1-deoxy-D-xylulose-5-phosphate synthase
KO
K01662
1-deoxy-D-xylulose-5-phosphate synthase [EC:
2.2.1.7
]
Organism
bmaz
Burkholderia mallei NCTC 10247
Pathway
bmaz00730
Thiamine metabolism
bmaz00900
Terpenoid backbone biosynthesis
bmaz01100
Metabolic pathways
bmaz01110
Biosynthesis of secondary metabolites
Brite
KEGG Orthology (KO) [BR:
bmaz00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
BM44_3367 (dxs)
09109 Metabolism of terpenoids and polyketides
00900 Terpenoid backbone biosynthesis
BM44_3367 (dxs)
Enzymes [BR:
bmaz01000
]
2. Transferases
2.2 Transferring aldehyde or ketonic groups
2.2.1 Transketolases and transaldolases
2.2.1.7 1-deoxy-D-xylulose-5-phosphate synthase
BM44_3367 (dxs)
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GFIT
Motif
Pfam:
DXP_synthase_N
Transket_pyr
Transketolase_C
E1_dh
Transketolase_N
TPP_enzyme_C
XFP_N
Motif
Other DBs
NCBI-ProteinID:
AIS26166
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Position
2:complement(280901..282805)
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AA seq
634 aa
AA seq
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MYDLLKTIDDPADLRRLDRRQLQPLADELRAFVLDSVSKTGGHLSSNLGTVELTIALHYV
FNTPDDRIVWDVGHQTYPHKILTGRRDGMKTLRQFDGISGFPRRSESEYDTFGTAHSSTS
ISAALGMAIGSKLNGDDRFSIAVIGDGAMTAGMAFEAMNNAGVSEDAKLLVILNDNDMSI
SPPVGALNRHLARLMSGRFYAAARAGVERVLSVAPPVLELARKLEEHAKGMVVPATLFEE
FGFNYIGPIDGHDLDSLIPTLQNIKELRGPQFLHVVTKKGQGYKLAEADPVLYHGPGKFN
PAEGIKPSTTPAKKTYTQVFGEWLCDAAELDARVVGITPAMREGSGMVEFEKRFPERYYD
VGIAEQHAVTFAGGLATEGLKPVVAIYSTFLQRAYDQLIHDVALQNLPVVFAIDRAGLVG
ADGATHAGAYDLAFLRCIPNMTVMAASDENECRQMLHTALQQPNPTAVRYPRGAGTGVAT
VKAFTEIPLGKGEVRRRTSQPDGKRIAILAFGTMVAPSLAAADALDATVANMRFVKPIDA
ELVQALARTHDYLVTVEEGCVMGGAGSACVEAMMESGAVRPVLQLGLPDRFVDHGDPAKL
LSLCGLDGDGIAKSIRERFLSHAADVASPAKRVA
NT seq
1905 nt
NT seq
+upstream
nt +downstream
nt
atgtacgacttgctgaaaaccatcgacgatccggcggacctgcgccgtctcgatcgtcgc
caactgcagccgctcgccgacgagctgcgcgcgttcgtcctcgacagcgtgtcgaagacg
ggcggccatttgtcgtccaatctcggcacggtcgagctgacgatcgcgctgcattacgtg
ttcaatacgccggacgaccggatcgtgtgggacgtcggtcaccagacctatccgcacaag
atcctgacgggccgccgcgacgggatgaagacgctgcgccagttcgacggcatctcgggc
tttccgcgccgctcggaatccgaatacgacacgttcggcaccgcacactcgagcacgtcg
atctcggccgcgctcgggatggcgatcggcagcaagctgaacggcgacgaccgcttctcg
atcgcggtgatcggcgacggcgcgatgacggccggcatggcgttcgaggcgatgaacaac
gcgggcgtgtcggaggacgcgaagctgctcgtgatcctgaacgacaacgacatgtcgatc
tcgccgcccgtcggcgcgctgaatcgccatctcgcgcgcctgatgtcgggccgcttctac
gcggccgcgcgtgcgggcgtggagcgcgtgctgagcgtcgcgccgcccgtgctggagctc
gcgcgcaagctcgaggagcatgcgaagggcatggtcgtgccggccaccctcttcgaggaa
ttcggcttcaactacatcgggccgatcgacgggcacgatctcgattcgctgatcccgacg
ctgcagaacatcaaggagctgcgcgggccgcagttcctgcacgtcgtgacgaagaagggc
cagggctacaagctcgccgaggccgacccggtgctctatcacgggcccggcaagttcaac
ccggcggaaggcatcaaaccgtcgacgacgcccgcgaagaagacctacacgcaagtgttc
ggcgaatggctgtgcgacgcggcggaactcgatgcgcgcgtggtcggcatcacgcccgcg
atgcgcgaaggctcgggcatggtcgagttcgagaaacgcttcccggagcgctactacgac
gtcggcatcgccgagcagcacgcggtgacgttcgcgggcggcctcgcgacggaagggctc
aagcctgtcgtggcgatctattcgacgttcctgcagcgcgcttatgatcagctgattcac
gacgtcgcgctgcagaacctgcccgtcgtgttcgcgatcgaccgcgcgggcctcgtcggc
gcggacggcgcgacgcacgcgggcgcgtacgatctcgcgttcctgcgctgcattccgaac
atgacggtgatggccgcgtcggacgagaacgagtgccgccagatgctgcataccgcgctg
caacagccgaacccgaccgccgtgcgttatccgcgcggcgcgggcacgggcgttgccacc
gtcaaggcgtttaccgagatcccgctcggcaagggcgaagtgcgccgccgcacgtcgcag
ccggacggcaagcgcatcgcgattctcgcgttcggcacgatggtggcgccgtcgctcgcg
gcggccgacgcgcttgacgcgaccgtcgcgaacatgcgcttcgtgaagccgatcgacgcc
gagctcgtgcaagcgctcgcgcggacgcacgactacctcgtcaccgtcgaggagggctgc
gtgatgggcggcgcgggttccgcatgcgtcgaggcgatgatggaaagcggcgccgtccgc
ccggtgctgcagctcggcttgccggaccgtttcgtcgatcacggcgatccggcgaagctg
ctgtcgctgtgcggcctcgacggcgacggcatcgccaaatcgattcgcgaacgcttcctg
agccacgcggcggacgtcgcgagcccggcgaagcgcgtcgcataa
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