Amycolatopsis mediterranei U32: AMED_2618
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Entry
AMED_2618 CDS
T01269
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
amd
Amycolatopsis mediterranei U32
Pathway
amd00730
Thiamine metabolism
amd00900
Terpenoid backbone biosynthesis
amd01100
Metabolic pathways
amd01110
Biosynthesis of secondary metabolites
Module
amd_M00096
C5 isoprenoid biosynthesis, non-mevalonate pathway
Brite
KEGG Orthology (KO) [BR:
amd00001
]
09100 Metabolism
09108 Metabolism of cofactors and vitamins
00730 Thiamine metabolism
AMED_2618 (dxs)
09109 Metabolism of terpenoids and polyketides
00900 Terpenoid backbone biosynthesis
AMED_2618 (dxs)
Enzymes [BR:
amd01000
]
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
AMED_2618 (dxs)
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GFIT
Motif
Pfam:
DXP_synthase_N
Transket_pyr
Transketolase_C
PFOR_II
E1_dh
TPP_enzyme_C
Motif
Other DBs
NCBI-ProteinID:
ADJ44413
UniProt:
A0A0H3D4J3
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Position
2797880..2799793
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AA seq
637 aa
AA seq
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MTMLESLSGPADLKRMSVEDLGELAAEIRDFLVDKVRRAGGHLGPNLGVVELTLALHRVF
DSPRDALVWDVGHQAYVHKLVTGRAAGFDLLRQTGGVTGYPSRAESEHDWVESSHASSGL
SYVDGLAKAFELAGGGRHAIAVVGDGALTGGMCWEALNNIAAHKDRPVVIVINDNGRSYS
PTIGGLADHLAALRLQPGYERLLDGGREILKHTPVVGRPIYAALHAAKAGLKDALSPQAM
FSDLGLKYLGPVDGHDQVALEKALHSARTFGGAVIVHVVTEKGHGYAPAVNNEHDQMHQT
DPIDPETGLPPVKGPSWTGVFGSELAAIGAEREDVVAITAAMLRSTGLDKFAEAFPDRWY
DVGIAEQHAVTSAAGLAMGGLHPVVAIYSTFLNRAFDQVLMDVALHRLPVTLVLDRAGIT
GPDGPSHHGMWDLSLLGMVPGMRVAAPRDPGTLREELREAVAVADGPTALRFSKGKVGTD
VAAVERIGTVDVLRRPGEGADVLLVTVGAFATLGLAAADRLADQGIGVTVVDPRWVLPVP
AELVALASQHKLVVTVEDSGRHGGFGSALAAMFRDAECDVPLRDLAVPQAFHDLGSRDEV
LGRIGLTAQDVARRVTEWASGRLGTSEEPVKKNADRS
NT seq
1914 nt
NT seq
+upstream
nt +downstream
nt
gtgacgatgctggagtccctgagcgggccggcggacctgaagcgcatgagtgtcgaggac
ctcggcgaactggccgccgagatccgggacttcctcgtcgacaaggtgcgccgggcgggc
ggccacctggggccgaacctcggcgtcgtcgagctgaccctggcattgcaccgcgtgttc
gactcgccgcgcgacgcgctcgtgtgggacgtcggtcaccaggcgtacgtccacaagctc
gtcaccggccgcgcggccgggttcgacctgctgcgccagaccggcggggtcaccggttac
ccgtcgcgcgcggagagtgagcacgactgggtggagagcagccacgcgtcgtccggtctg
tcctacgtggacggcctggcgaaggcgttcgagctggccggcggcgggcggcacgcgatc
gccgtcgtcggcgacggcgcgctcaccggcggcatgtgctgggaggcgctcaacaacatc
gccgcgcacaaggaccgcccggtcgtcatcgtgatcaacgacaacggccgctcctactcg
ccgacgatcggcggcctggccgaccacctcgcggcgctgcgcctgcagcccggctacgag
cggctcctcgacggcggccgcgagatcctcaagcacaccccggtcgtcggcaggccgatc
tacgccgcgctgcacgccgcgaaggccggcctgaaggacgcgctgagcccgcaggcgatg
ttctccgacctgggcctgaagtacctcggcccggtcgacggccacgaccaggtggcgctg
gagaaggcgctgcacagcgcgcgcaccttcggcggcgccgtgatcgtgcacgtggtcacc
gagaagggccacggctacgcgccggcggtcaacaacgagcacgaccagatgcaccagacc
gacccgatcgacccggagaccggcctgccgccggtgaagggcccgagctggaccggcgtg
ttcggctccgagctggcggcgatcggcgccgagcgtgaggacgtcgtcgcgatcactgcg
gcgatgctgcgttccaccgggctggacaagttcgccgaggcgttcccggaccgctggtac
gacgtcggtatcgccgagcagcacgccgtcacctcggcggcggggctggccatgggcggg
ttgcacccggtcgtcgcgatctactcgacgttcctgaaccgggcgttcgaccaggtgctg
atggacgtcgctctgcaccggctgccggtgacgctggtgctggaccgggccgggatcacc
gggccggacgggccgagccaccacggcatgtgggacctctcgctgctcggcatggtgccg
gggatgcgggtggcggcgccgcgtgatccggggacgctgcgggaggagctgcgcgaggcg
gttgctgttgccgacgggccgactgcgctgcggttctccaaggggaaggtcggcacggat
gtggcggctgtggagcggatcggcacggtcgatgtgctgcgtcgtcctggtgaaggtgcc
gacgtgttgctcgtgacggtcggggcctttgcaacgctgggtctcgctgctgcggatcgg
cttgctgatcaggggatcggggtgaccgtggtggatcctcggtgggtgcttccggttcct
gcagagttggttgcgttggcttcgcagcacaagcttgtggtgactgtggaagacagtggg
cggcatggggggttcgggtcggctttggccgcgatgttccgggatgccgagtgtgatgtt
cctctgcgggatttggctgtgcctcaggctttccatgatttggggagccgggatgaggtg
ctggggcggatcgggctgactgctcaggatgtggctcggcgggttaccgagtgggcctcg
ggccggctgggcacttcggaagagccggtgaagaagaacgccgaccgcagctga
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