Xylanibacter ruminicola: PRU_0157
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Entry
PRU_0157 CDS
T01212
Name
(GenBank) CoA-binding domain protein
KO
K24012
acetate---CoA ligase (ADP-forming) [EC:
6.2.1.13
]
Organism
pru
Xylanibacter ruminicola
Pathway
pru00010
Glycolysis / Gluconeogenesis
pru00620
Pyruvate metabolism
pru00640
Propanoate metabolism
pru01100
Metabolic pathways
pru01120
Microbial metabolism in diverse environments
Brite
KEGG Orthology (KO) [BR:
pru00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00010 Glycolysis / Gluconeogenesis
PRU_0157
00620 Pyruvate metabolism
PRU_0157
00640 Propanoate metabolism
PRU_0157
09180 Brite Hierarchies
09181 Protein families: metabolism
01004 Lipid biosynthesis proteins [BR:
pru01004
]
PRU_0157
Enzymes [BR:
pru01000
]
6. Ligases
6.2 Forming carbon-sulfur bonds
6.2.1 Acid-thiol ligases
6.2.1.13 acetate---CoA ligase (ADP-forming)
PRU_0157
Lipid biosynthesis proteins [BR:
pru01004
]
Acyl-CoA ligase
Short/medium chain acyl-CoA ligase
PRU_0157
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Gene cluster
GFIT
Motif
Pfam:
ATP-grasp_5
Succ_CoA_lig
CoA_binding_2
CoA_binding
Ligase_CoA_2
DUF6671
Motif
Other DBs
NCBI-ProteinID:
ADE82218
UniProt:
D5EVL9
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All DBs
Position
complement(194777..196837)
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AA seq
686 aa
AA seq
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MINQQLLNPKSIVVIGGSNNVHKPGGAIVRNIKNGGFDGPLHIVNPKEDEVQGIKAYHDV
KDIPNTDLAVLVVAAKFCPDYVDYLCAEKGVRAFVIISAGFGEETKAGAELEQRILDTCK
KFGAALIGPNCIGLLNRNHHSVFTLPIPNLNPQGVDFVSGSGATAVFILESAVIKGLQFN
SVWSIGNGKQIGIEDVLQYMDERFNPETDSKVKLLYIENISNPDKLLYHASNLIRKGCRI
AAIKAGSSESGSRAASSHTGAIASSDSAVEALFRKAGIVRCFSREELTTVGCIFTLPELK
GKNFAIVTHAGGPGVMLTDALSKGGLNVPKIEGPEADELKAQLFPGSSVANPIDFLATGT
AEQLGTVIDYCENKFDHIDAIAVIYGTPGLTHLYEAYDVLDKKIKECKKPIFPILPSLHT
AGPEVEEFLKRGHVNFSDEVTLATALSQIMRTPRPAPPEVQLYGIDLPRLHIIIKGIENN
GYVSPEVVRDILSCAGIPQVPEMVSTSKEELRAFAERVGFPVVAKVVGPIHKSDVGGVTL
NIRTPEHLELEFDRMMKIKDATGVMVQKMMKGTELFIGAKYETRFGHVILCGLGGIFVEV
LKDVSSGLAPLSYGEAYSMIHSLKGYKILKGTRGQKGINEQKFAEIIVRLSTLLRFATEI
KEMDINPLLADENDVVAVDARILIEK
NT seq
2061 nt
NT seq
+upstream
nt +downstream
nt
atgattaaccaacaattattgaatcccaagagcatcgtcgttatcggcggctctaacaac
gtgcataagcccggtggcgctatagtacgtaacattaagaatggtggtttcgatggtccg
ctgcacatcgtaaaccccaaggaagacgaagtgcagggaatcaaagcctatcatgacgta
aaggatatccccaacacggatttggccgtgctcgtggtggccgccaagttctgtcccgat
tatgtggactatctttgtgccgagaaaggggtgcgcgcctttgtgattatctcagccgga
tttggcgaggagaccaaggcgggtgccgaactggaacagcgcatcctggatacgtgcaaa
aagttcggagcagcactcatcggacctaactgtatcggactgctgaaccgcaaccaccat
agtgtgtttacgctgcccatccccaacctgaatccacagggtgttgatttcgtatcggga
tcgggtgccacagcggtatttattcttgagagtgcggttatcaagggcttgcagtttaac
agcgtatggagcattggtaacggtaaacagattggtatcgaggatgtgctacagtatatg
gacgagcgctttaaccccgagaccgattcgaaggtaaaactgctttatatcgagaatatc
tctaaccccgataagttgttgtatcatgccagcaacctgatacgtaagggttgtaggatt
gcagctatcaaggctggttcgagcgagagtggcagtcgtgctgcctcatcgcacacaggt
gccattgcctcgagcgattcggctgtagaggcgctgttccgtaaggccggtatcgtgcgc
tgtttctcacgcgaggagctcaccaccgtgggttgcattttcacattgcccgaactgaag
ggtaagaactttgcgattgtaacccatgcaggcggtcctggcgtgatgctgaccgatgcc
ctgtcgaaaggcggactgaacgtgcccaagatcgaaggtcctgaggccgacgaactgaaa
gcacaactcttcccaggttcatcagtagccaaccctatcgatttcttagccacaggtacc
gccgagcagttgggtaccgtgattgattattgcgaaaacaagtttgatcatatcgatgcc
atcgccgtaatctacggcacccctggcctcacccatctgtacgaggcctacgatgtgctc
gacaagaaaatcaaggagtgcaaaaagcctatcttccccatcctacccagtctgcacaca
gcaggtcccgaggttgaggaattcctgaagcgtggtcatgttaacttcagcgacgaggtg
acgctggccacagcactcagtcagattatgcgcaccccacgccctgcaccacccgaggtg
cagctttatggcatcgacctgccccgcttacacattattattaagggtatcgagaacaat
ggatacgtatcgcccgaggtggtacgcgacatcctctcgtgcgcaggcatcccccaggtt
cccgagatggtaagcaccagcaaggaagagctacgtgcctttgccgaacgtgtgggattc
cccgtagtggctaaggtagttggtcctatccacaagagcgatgtgggtggtgtaacgctg
aacatccgcacccccgagcacttagagttggagttcgaccgcatgatgaagattaaggat
gccacaggcgtgatggtacagaagatgatgaagggtaccgagctgtttatcggtgccaag
tacgagacgcgtttcggccacgttatcctgtgcggcttgggcggcatctttgtcgaggtg
ctgaaggatgtatcaagcggtttggccccattgagctatggcgaggcctactcgatgatt
cactcgctaaagggctacaagatattaaaaggtacacgcggacagaagggcatcaacgag
cagaagtttgccgagattatcgtgcgcctgtcaaccctgctgcgtttcgccacagagatt
aaggagatggacattaacccgctcctggccgacgagaacgacgtagtagccgttgacgct
cgcattctcattgagaaatga
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