Xylanibacter ruminicola: PRU_2279
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Entry
PRU_2279 CDS
T01212
Symbol
pckA
Name
(GenBank) phosphoenolpyruvate carboxykinase (ATP)
KO
K01610
phosphoenolpyruvate carboxykinase (ATP) [EC:
4.1.1.49
]
Organism
pru
Xylanibacter ruminicola
Pathway
pru00010
Glycolysis / Gluconeogenesis
pru00020
Citrate cycle (TCA cycle)
pru00620
Pyruvate metabolism
pru00710
Carbon fixation by Calvin cycle
pru01100
Metabolic pathways
pru01110
Biosynthesis of secondary metabolites
pru01120
Microbial metabolism in diverse environments
pru01200
Carbon metabolism
Brite
KEGG Orthology (KO) [BR:
pru00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
PRU_2279 (pckA)
00020 Citrate cycle (TCA cycle)
PRU_2279 (pckA)
00620 Pyruvate metabolism
PRU_2279 (pckA)
09102 Energy metabolism
00710 Carbon fixation by Calvin cycle
PRU_2279 (pckA)
Enzymes [BR:
pru01000
]
4. Lyases
4.1 Carbon-carbon lyases
4.1.1 Carboxy-lyases
4.1.1.49 phosphoenolpyruvate carboxykinase (ATP)
PRU_2279 (pckA)
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Gene cluster
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Motif
Pfam:
PEPCK_ATP
PEPCK_GTP
DUF6869
Motif
Other DBs
NCBI-ProteinID:
ADE83247
UniProt:
D5EVN2
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Position
2750905..2752518
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AA seq
537 aa
AA seq
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MAKLDLTQYGITGSTVIAHNPSYETLFAEETKAGLEGFDKGVNTELNAVNVMTGIYTGRS
PKDKYIVKDAQSEDKVWWTSEEYKNDNHPMSEEVWKQVKDIAIKELSNKNLYVVDAFCGA
NEATRLAVRFIVEVAWQAHFVTNMFIQPTAEELEKFEPNFVIYNASKAKVENYKELGLNS
ETCVAFNTTSREQCIINTWYGGEMKKGMFSMQNYYLPLQGIASMHCSANTDMEGKNTAIF
FGLSGTGKTTLSTDPKRLLIGDDEHGWDDEGVFNLEGGCYAKVINLDKESEPDIYNAIRR
NALLENVTVAEDGKIDFADKSVTENTRVSYPIDHIEKIAQKVNGKSAGPDAKNVIFLSAD
AFGVLPPVSILTPEQTKYYFLSGFTAKLAGTERGITEPTPTFSACFGQAFLELHPTKYAE
ELVKKMEKSGAKAYLVNTGWNGTGKRISIRDTRGIIDAILGGAILNAPTKKIPYFDFEVP
TQLEGVDTNILDPRDTYANAAEWEEKAKDLAGRFIKNFKKYEGNEAGKALVAAGPKL
NT seq
1614 nt
NT seq
+upstream
nt +downstream
nt
atggcaaagttagatttgactcagtatggcattacaggttctaccgtaattgcacacaat
ccatcgtatgagactctgttcgcagaggagacaaaggctggcctcgagggtttcgacaag
ggcgtaaacaccgagctcaacgctgtaaacgtaatgactggtatctacaccggccgttca
cctaaggataagtacatcgtaaaggatgcacagagcgaggacaaggtatggtggacttct
gaggaatataagaacgacaaccaccccatgagcgaggaggtttggaagcaggttaaggac
atcgctatcaaggagctctctaacaagaacctctatgtagtagatgctttctgcggtgct
aacgaggctacacgtctggctgttcgcttcatcgttgaggtagcatggcaggcacacttc
gtaacaaacatgttcattcagcctactgctgaggagctggagaagttcgagcctaacttc
gtaatctacaacgcctctaaggctaaggttgagaactacaaggagctgggtctgaactca
gagacttgtgttgccttcaacacaacaagccgcgagcagtgcatcatcaacacatggtac
ggtggtgagatgaagaagggtatgttctcaatgcagaactactatctgcctctgcagggt
atcgcttcaatgcactgctctgctaacaccgacatggagggtaagaacacagctatcttc
ttcggtctgtctggtacaggtaagaccactctgtcaaccgatccaaagcgtctgctgatt
ggtgacgacgagcacggatgggacgacgagggcgtattcaacctcgagggtggttgctac
gctaaggttatcaaccttgacaaggagagcgagcccgatatctacaatgctatccgtcgt
aacgctctgctcgagaacgtaactgttgctgaggatggtaagatcgacttcgctgataag
agcgtaactgagaatactcgtgtatcatatcctatcgaccacatcgagaagattgcccag
aaggtaaatggtaagagtgctggtcctgacgctaagaacgttatcttcctgagtgctgat
gcattcggcgtactgcccccagtatctatcctgactcctgagcagactaagtactacttc
ctctctggtttcacagctaagctggctggtacagagcgcggtatcactgagcctactcca
acattctctgcttgcttcggtcaggcattcctcgagctgcacccaacaaagtatgctgag
gagctggttaagaagatggagaagagcggtgctaaggcatacctcgtaaacactggttgg
aacggtactggtaagcgtatctctatccgcgatactcgtggtatcatcgacgctatcctg
ggtggtgccatcctgaacgctcctaccaagaagatcccttacttcgacttcgaggttcca
acacagcttgagggcgttgacaccaacatccttgatcctcgcgacacttacgctaacgct
gctgagtgggaggagaaggctaaggatctggctggccgtttcatcaagaacttcaagaag
tacgagggcaacgaggctggtaaggctctggtagctgctggtccaaagctctaa
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