Blautia producta: PMF13cell1_04312
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Entry
PMF13cell1_04312 CDS
T05894
Symbol
rffG
Name
(GenBank) dTDP-glucose 4,6-dehydratase 2
KO
K01710
dTDP-glucose 4,6-dehydratase [EC:
4.2.1.46
]
Organism
bpro
Blautia producta
Pathway
bpro00521
Streptomycin biosynthesis
bpro00523
Polyketide sugar unit biosynthesis
bpro00525
Acarbose and validamycin biosynthesis
bpro00541
Biosynthesis of various nucleotide sugars
bpro01100
Metabolic pathways
bpro01110
Biosynthesis of secondary metabolites
bpro01250
Biosynthesis of nucleotide sugars
Module
bpro_M00793
dTDP-L-Rha biosynthesis, Glc-1P => dTDP-L-Rha
Brite
KEGG Orthology (KO) [BR:
bpro00001
]
09100 Metabolism
09107 Glycan biosynthesis and metabolism
00541 Biosynthesis of various nucleotide sugars
PMF13cell1_04312 (rffG)
09109 Metabolism of terpenoids and polyketides
00523 Polyketide sugar unit biosynthesis
PMF13cell1_04312 (rffG)
01055 Biosynthesis of vancomycin group antibiotics
PMF13cell1_04312 (rffG)
09110 Biosynthesis of other secondary metabolites
00521 Streptomycin biosynthesis
PMF13cell1_04312 (rffG)
00525 Acarbose and validamycin biosynthesis
PMF13cell1_04312 (rffG)
Enzymes [BR:
bpro01000
]
4. Lyases
4.2 Carbon-oxygen lyases
4.2.1 Hydro-lyases
4.2.1.46 dTDP-glucose 4,6-dehydratase
PMF13cell1_04312 (rffG)
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GFIT
Motif
Pfam:
GDP_Man_Dehyd
Epimerase
3Beta_HSD
Polysacc_synt_2
NAD_binding_4
RmlD_sub_bind
NAD_binding_10
Methyltransf_25
NifZ
NmrA
Methyltransf_11
Motif
Other DBs
NCBI-ProteinID:
QBE98746
UniProt:
A0A4P6M2N7
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Position
complement(4877274..4878299)
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AA seq
341 aa
AA seq
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MKVLVTGGAGFIGGNFVHHMVNKYPDYEIVNLDLLTYAGNLETLKPVEDKPNYKFVKGDI
ADEPFIMDLFEKEKFDIVVNFAAESHVDRSIEDPGIFVQTNVMGTRVLLDASKKYGVKRY
HQVSTDEVYGDLPLDRPDLFFTEETPIHTSSPYSSSKASADLFVLAYYRTFGLPVTISRC
SNNYGPYHFPEKLIPLMISRALADEELPVYGNGENVRDWLHVSDHCEAIDLIIHKGRVGE
VYNVGGHNERTNLQVVQTILKALNKPESLIKYVKDRPGHDMRYAIDPTKLETELGWKPQY
NFDTGIAQTIQWYLDNEDWWKHILSGEYSNYFDSMYGERLA
NT seq
1026 nt
NT seq
+upstream
nt +downstream
nt
atgaaagtattagtaacaggcggtgccggttttatcggaggaaactttgtacatcatatg
gtgaataaatacccggattatgagattgtgaatttggatctgctcacctatgccggcaat
ctggagactttaaaaccagtagaagataaaccgaattataaatttgtcaaaggtgatatt
gcggatgaaccgtttattatggatctgtttgagaaagagaaatttgacattgtagtgaac
tttgcggcggagagccatgtggaccgttctatagaagacccgggaattttcgttcagaca
aacgttatgggaacgagagtgcttctggatgcttccaaaaaatacggtgtaaagcgttac
catcaggtttccacagatgaggtttacggagatctgcctcttgacagaccggatctgttc
tttacagaggagacacctatacacacttcaagcccgtattcatcctcaaaggccagcgcg
gacctgtttgtacttgcctattacagaacctttggtttgccggtgaccatatctagatgc
tcaaacaactacggaccataccattttccggaaaaactgattccgctgatgatcagccgc
gcgctggcagatgaagagctgccggtatacggaaacggtgaaaatgtgagagactggctg
catgtatcagatcactgcgaggccattgacctgatcatccataagggcagagtcggtgag
gtttataatgtgggcggccacaatgagcggaccaatcttcaggtggtacagaccatcctc
aaagccctgaacaaaccggaaagtctgatcaaatatgtaaaagaccgtccgggacatgac
atgagatatgccattgatccgactaaactggaaacagagcttggatggaaaccgcagtat
aattttgatacaggaatcgcccagaccatccagtggtatctggataatgaagactggtgg
aaacacatattaagcggcgagtattccaattattttgacagtatgtacggagagcgtctg
gcgtaa
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