Gordonibacter pamelaeae: GPA_05820
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Entry
GPA_05820 CDS
T02609
Name
(GenBank) pyruvate phosphate dikinase
KO
K01006
pyruvate, orthophosphate dikinase [EC:
2.7.9.1
]
Organism
gpa
Gordonibacter pamelaeae
Pathway
gpa00010
Glycolysis / Gluconeogenesis
gpa00620
Pyruvate metabolism
gpa00710
Carbon fixation by Calvin cycle
gpa00720
Other carbon fixation pathways
gpa01100
Metabolic pathways
gpa01110
Biosynthesis of secondary metabolites
gpa01120
Microbial metabolism in diverse environments
gpa01200
Carbon metabolism
Brite
KEGG Orthology (KO) [BR:
gpa00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
GPA_05820
00620 Pyruvate metabolism
GPA_05820
09102 Energy metabolism
00710 Carbon fixation by Calvin cycle
GPA_05820
00720 Other carbon fixation pathways
GPA_05820
Enzymes [BR:
gpa01000
]
2. Transferases
2.7 Transferring phosphorus-containing groups
2.7.9 Phosphotransferases with paired acceptors
2.7.9.1 pyruvate, phosphate dikinase
GPA_05820
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Gene cluster
GFIT
Motif
Pfam:
PEP-utilizers_C
PPDK_N
PEP-utilizers
AftA_C
Motif
Other DBs
NCBI-ProteinID:
CBL03511
UniProt:
D6E714
LinkDB
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Position
complement(570798..573458)
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AA seq
886 aa
AA seq
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MKAQLGGKGANLAEMANIGLPVPPGFTITCQTCMEYANADNTWPEGALDTIQSYREDLEA
RMGKKIGDAADPLLVSVRSGAPMSMPGMMDTVLNLGLNDESINGLIAQTENPRFAWDSYR
RFIQMFSNVVMGLDGDLFENAITSMKNVRGAASDTDLSADDLKELVAEFKQIFSENVSAE
EYPSLVVDGSVQFPQDPSAQLQLAIEAVFGSWNNPRAVLYRKQNKIADDLGTAVNVQSMV
FGNKGNTSATGVAFTRNPANGEKEFYGDYLVNAQGEDVVAGIRNTSPIADLKHVEGLEEA
GRELEEVFVTLENHFRDMCDIEFTIEQGKLWMLQTRVGKRTAAAALHIAIEMEKEGLISK
EEAVMRVDPEQLDQLLHPQFDKNASYDVVAKGLNASPGAAVGEAVFSAADAVAVTEAGRK
CVLVRWETNPDDLAGMIAAEGILTSHGGKTSHAAVIARGMGAPCVCGVEALKIDAEKKEA
AVAGTDIVIREGDMISIDGTTGSVVLGAVDLVLPELTGDLDTILEWADEFRTMGVRANAD
NPEDAELSRNFGAEGIGLCRTEHMFLGDRKQIIQSFILNDEPAVREKALADLLEAQTGDF
YGMFKAMDGLPVIVRLLDPPLHEFLESPRDLEVEIARLEASGTPAAELADKRQLLSLVDA
MAEANPMLGLRGCRLAILYPELPAMQTRAIATAAARLKKEGLDPEPEIMIPLVSVLPELE
TLRAEVEAVIAEVCEAEGVELDIPIGTMIELPRAAVTADEIATQADFFSFGTNDLTQTTF
GFSRDDVEAKFIPRYLERRILPCNPFETVDAGVAALVDMGCTKGRATNPDIQLGVCGEHG
GDPDSVKTFHKIGLTYVSCSPYRVPLARLAAGQAALAEKMGDHRDK
NT seq
2661 nt
NT seq
+upstream
nt +downstream
nt
atgaaggcgcagctgggcggcaagggcgccaacctcgccgagatggccaacatcgggctg
cccgtgcctcccggcttcaccatcacgtgccagacctgcatggagtacgccaacgccgac
aacacgtggcccgagggcgcgctcgacaccatccagtcctaccgcgaggacctcgaggcc
cgcatgggcaagaagatcggcgatgcggccgacccgctgctcgtgtccgtgcgctccggc
gcgccgatgtccatgcccggcatgatggacacggtgctgaacctcggcctgaacgacgag
tccatcaacggcctcatcgcccagaccgagaacccgcgcttcgcctgggactcctaccgc
cgcttcatccagatgttctccaacgtggtcatgggcctggacggcgacctgttcgagaac
gccatcacgtccatgaagaacgtgcgcggcgccgcctccgacaccgacctctcggccgac
gacctcaaggagctcgtggccgagttcaagcagatcttctccgagaacgtgtccgccgag
gagtacccgagcctcgtggtggacggttccgtgcagttcccgcaggacccgagcgcgcag
ctgcagctggccatcgaggccgtgttcggcagctggaacaacccgcgcgcggtcctctac
cgcaagcagaacaagatcgccgacgacctgggcaccgccgtgaacgtgcagtccatggtg
ttcggcaacaagggcaacacgtcggccacgggcgtggcgttcacgcgcaaccccgccaac
ggcgagaaggagttctacggcgactacctggtgaacgcccagggcgaggacgtcgtggcc
ggcatccgcaacacgagccccatcgccgacctcaagcatgtggagggcctggaagaggcc
ggccgcgagctcgaggaggtgttcgtgacgctggagaaccacttccgcgacatgtgcgac
atcgagttcaccatcgagcagggcaagctctggatgctccagacccgcgtgggcaagcgc
accgccgccgccgcgctgcacatcgccatcgagatggagaaggagggcctcatctccaag
gaggaggccgtcatgcgcgtcgaccccgagcagctcgaccagctgctgcacccgcagttc
gacaagaacgcctcctacgacgtggtggccaagggcctgaacgcgtcccccggcgccgcc
gtgggcgaggccgtgttctcggctgccgacgccgtggccgtgaccgaggccggccgcaag
tgcgtgctcgtgcgctgggagacgaaccccgacgacctggccggcatgatcgccgccgag
ggcatcctcacgtcgcacggcggcaagacgagccacgcggccgtcatcgcccgcggcatg
ggcgcgccgtgcgtctgcggcgtggaggccctgaagatcgacgccgagaagaaggaagcg
gccgtggccggcacggacatcgtcatccgcgagggcgacatgatctccatcgacggcacg
acgggctccgtggtgctgggtgccgtggacctcgtgctgcccgagctcaccggcgacttg
gacaccatccttgagtgggccgacgagttccgcaccatgggcgtgcgtgccaacgccgac
aaccccgaggacgcggagctctcccgcaacttcggcgccgagggcatcgggctctgccgt
accgagcacatgttcctgggcgaccgcaagcagatcatccagtccttcatcctcaatgac
gagccggccgtccgcgagaaggcgctcgccgacctgctggaggcccagacgggcgacttc
tacggcatgttcaaggctatggacggcctgccggtcatcgtgcgcctgctcgacccgccg
ctgcacgagttcctggagagcccgcgcgacctggaggtggagatcgcccgcctggaggcg
tccggcacgccggccgccgagctcgccgacaagcgccagctgctgagcctggtggacgcc
atggccgaggcgaacccgatgctcggcttgcgcggctgccgcctggccatcctctacccc
gagctgccggccatgcagacgcgcgccatcgccaccgccgccgcccgcctgaagaaggag
ggcctagatcccgagcccgagatcatgatcccgctcgtgagcgtgctgcccgagctggag
acgctgcgcgccgaggtggaggccgtcatcgccgaggtgtgcgaggccgagggcgtggag
ctggacattcccatcggcacgatgatcgagctcccgcgcgcggccgtgaccgccgacgag
atcgccacgcaggccgacttcttcagcttcggcacgaacgacctgacccagacgacgttc
ggcttcagccgcgacgacgtggaggccaagttcatcccgcgctacctggagcgccgcatc
ctgccgtgcaacccgttcgagacggtcgacgccggcgtggccgcgctcgtggacatgggc
tgcacgaagggccgcgccacgaacccggacatccagctgggcgtgtgcggcgagcacggt
ggcgaccccgactccgtgaagacgttccacaagatcggcctcacctacgtgagctgctcg
ccctaccgcgtgccgctcgcgcgcctcgccgccggccaggcggcgctggccgagaagatg
ggcgaccaccgcgacaagtaa
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