Burkholderia sp. MS455: FPJ27_16165
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Entry
FPJ27_16165 CDS
T11444
Name
(GenBank) AMP-binding protein
KO
K01895
acetyl-CoA synthetase [EC:
6.2.1.1
]
Organism
buv Burkholderia sp. MS455
Pathway
buv00010
Glycolysis / Gluconeogenesis
buv00620
Pyruvate metabolism
buv00630
Glyoxylate and dicarboxylate metabolism
buv00640
Propanoate metabolism
buv00680
Methane metabolism
buv00720
Other carbon fixation pathways
buv01100
Metabolic pathways
buv01110
Biosynthesis of secondary metabolites
buv01120
Microbial metabolism in diverse environments
buv01200
Carbon metabolism
Brite
KEGG Orthology (KO) [BR:
buv00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
FPJ27_16165
00620 Pyruvate metabolism
FPJ27_16165
00630 Glyoxylate and dicarboxylate metabolism
FPJ27_16165
00640 Propanoate metabolism
FPJ27_16165
09102 Energy metabolism
00720 Other carbon fixation pathways
FPJ27_16165
00680 Methane metabolism
FPJ27_16165
09180 Brite Hierarchies
09181 Protein families: metabolism
01004 Lipid biosynthesis proteins [BR:
buv01004
]
FPJ27_16165
Enzymes [BR:
buv01000
]
6. Ligases
6.2 Forming carbon-sulfur bonds
6.2.1 Acid-thiol ligases
6.2.1.1 acetate---CoA ligase
FPJ27_16165
Lipid biosynthesis proteins [BR:
buv01004
]
Acyl-CoA ligase
Short/medium chain acyl-CoA ligase
FPJ27_16165
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NCBI-ProteinID:
QRR07774
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Position
2:complement(2549278..2550984)
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AA seq
568 aa
AA seq
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MTVQAFLDARDFLLRHRTDYETAYRDFEWPVLDAFNWALDYFDPMARGNDRPALWIVDAA
TGTGDPYSFAQMSERSSRIANWLRSIGVVRGDRILLMLPNRVELWDAMLAAMKLGAIVLP
ATTQLSADDVRDRVQIGGAKYAIVDENETAKFEQPDLGLARKIVAGAPRAGWLAMNDGYA
ASAVFEPDAVTHANDPMLLYFTSGTTSKPKLVEHTHRTYPVGHLSTMYWVGLQPGDIHWN
ISSPGWAKHAWSCFFAPWNAQACVFAFNYARFEPKVVLDALVKYQVTTLCAPPTVWRMLV
QQPLASFDVKLREIVGAGEPLNPEIIERVKKAWGITIRDGYGQTETTCLIGNSPGQPVVA
GSMGRPLPGYRIALLDPDGVPVTEGEVALPIGPDVARPVGLMNGYANNPDATAYAMRDGH
YRTSDIAMRGDDGYYVYIGRADDVFKSSDYRLSPFELESVLIEHPAIAEAAVVPSPDPVR
LSVPKTFITLRQGYEESPALALEIFRFSRDKLAPYKRIRRLQFAELPKTISGKIRRVELR
RREIERGDDAAARMPGEYWEEDFAAELK
NT seq
1707 nt
NT seq
+upstream
nt +downstream
nt
atgacggtacaggcattcctggacgcacgcgactttctgctgcgccatcgcaccgactac
gaaaccgcgtaccgcgatttcgagtggccggtgctcgatgcgttcaactgggcgctcgac
tacttcgacccgatggcgcgcggcaacgaccggcccgcgctgtggatcgtcgacgcggcg
accggtacgggcgatccgtattcgttcgcgcagatgtccgagcgttcgtcgcggatcgcg
aactggctgcgctcgatcggcgtcgtgcgcggcgatcgcatcctgctgatgctgccgaac
cgtgtcgaactgtgggacgcgatgctcgccgcgatgaagctcggcgcgatcgtgctgccc
gcgaccacgcaactgtcggccgacgacgtgcgcgaccgcgtgcagatcggcggcgcgaaa
tacgcgatcgtcgacgagaacgaaaccgccaaattcgaacagcccgaccttggcctcgcg
cggaagatcgtcgccggcgcgccgcgcgcgggctggctcgcgatgaacgacggctacgcg
gcgagtgccgtgttcgagccggacgccgtcacgcatgcaaacgatccgatgctgctgtac
ttcacgtcgggcacgacgtcgaagccgaagctcgtcgagcatacgcaccgcacctatccg
gtcggccatctgtcgacgatgtactgggtcggcctgcagccgggcgacatccactggaac
atcagctcgcccggctgggcgaagcatgcgtggagctgcttcttcgcgccgtggaacgcg
caggcgtgcgtgttcgcattcaactacgcgcgcttcgagccgaaggtcgtgctcgatgcg
ctcgtcaaataccaggtgacgacgctatgcgcgccgccgaccgtatggcgcatgctcgtg
cagcagccgctcgcgtcgttcgacgtgaagctgcgcgagatcgtcggtgcgggcgagccg
ctgaatcccgagatcatcgagcgcgtgaagaaggcgtggggcatcacgatccgcgacggc
tacggccagaccgagacgacctgcctgatcggcaactcgccgggccagccggtcgtcgcg
ggctcgatgggccggccgctgcccggctaccggatcgcgctgctcgatccggacggcgtg
cccgtgaccgaaggcgaggtcgcgctgccgatcggcccggacgtcgcgcgcccggtcggg
ctgatgaacggctatgcgaacaaccccgacgcgaccgcctacgcgatgcgcgacggccac
taccgcacgtcggacatcgcgatgcgcggcgacgacggttactacgtgtatatcggccgt
gcggacgacgtgttcaagtcgtccgactaccggttgagcccgttcgaactcgagagcgtg
ctgatcgagcatccggcgatcgccgaggcggccgtcgtgccgagccccgaccccgtgcgg
ctgtcggtgccgaagaccttcatcacgctgcggcagggctacgaggagagccccgcgctc
gcgctggaaatcttccgcttctcgcgcgacaagctcgcgccgtacaagcgcattcgccgc
ctgcagttcgcggagctgccgaagacgatctcggggaagatccgccgcgtcgagctgcgc
cgccgcgagatcgagcgcggcgacgacgcggccgcgcgaatgcccggcgaatactgggaa
gaagatttcgccgccgaattgaaatga
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