Burkholderia sp. YI23: BYI23_A017320
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Entry
BYI23_A017320 CDS
T01711
Name
(GenBank) acetyl-CoA carboxylase carboxyltransferase subunit alpha
KO
K01962
acetyl-CoA carboxylase carboxyl transferase subunit alpha [EC:
6.4.1.2
2.1.3.15
]
Organism
byi
Burkholderia sp. YI23
Pathway
byi00061
Fatty acid biosynthesis
byi00620
Pyruvate metabolism
byi00640
Propanoate metabolism
byi00720
Other carbon fixation pathways
byi01100
Metabolic pathways
byi01110
Biosynthesis of secondary metabolites
byi01120
Microbial metabolism in diverse environments
byi01200
Carbon metabolism
byi01212
Fatty acid metabolism
Module
byi_M00082
Fatty acid biosynthesis, initiation
Brite
KEGG Orthology (KO) [BR:
byi00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00620 Pyruvate metabolism
BYI23_A017320
00640 Propanoate metabolism
BYI23_A017320
09102 Energy metabolism
00720 Other carbon fixation pathways
BYI23_A017320
09103 Lipid metabolism
00061 Fatty acid biosynthesis
BYI23_A017320
Enzymes [BR:
byi01000
]
2. Transferases
2.1 Transferring one-carbon groups
2.1.3 Carboxy- and carbamoyltransferases
2.1.3.15 acetyl-CoA carboxytransferase
BYI23_A017320
6. Ligases
6.4 Forming carbon-carbon bonds
6.4.1 Ligases that form carbon-carbon bonds (only sub-subclass identified to date)
6.4.1.2 acetyl-CoA carboxylase
BYI23_A017320
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Gene cluster
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Motif
Pfam:
ACCA
Carboxyl_trans
ABC_tran_CTD
ECH_1
Motif
Other DBs
NCBI-ProteinID:
AET89570
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Position
1:complement(1951676..1952647)
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AA seq
323 aa
AA seq
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MKTTFLDFEQPIAELEAKIEELRFVQDDSAVDISEEIERLSKKSQQLTKDLYANLSPWQV
SQIARHPQRPYTLDYVSELFTDFHELHGDRAFADDLAIVGGFARFNGQPCMVIGHQKGRD
TKERALRNFGMPRPEGYRKAERLMRTAEKFSLPIFTFVDTPGAYPGIGAEERGQSEAIGR
NLYVMAELKTPIITTIIGEGGSGGALAVAVADVVMMLQFSTYSVISPEGCASILWKSAAK
APEAAEALGLTAHRLKALGLIDKIVNEPLGGAHRDSKGMAALLRRALADSLRQFQGMSVN
ELRERRFEKLMAYGKFKESLPGA
NT seq
972 nt
NT seq
+upstream
nt +downstream
nt
atgaagaccacgtttctggatttcgagcagccgatcgctgaactcgaagcgaagatcgaa
gaactccgcttcgttcaggacgattccgctgtcgatatttcggaagaaatcgagcggctg
tcgaagaagagccagcaactcaccaaggatctctacgcgaatctgtcgccctggcaggtt
tcgcaaatcgcgcgtcatccgcagcgtccgtacacgctcgactatgtgagcgaactgttc
accgatttccacgaactgcatggcgaccgcgccttcgcggacgacctcgcgatcgtcggc
ggttttgcgcgcttcaacggtcagccgtgcatggtgatcggccatcagaagggccgcgac
acgaaggagcgcgcgctgcgcaacttcggcatgccgcgtccggaaggctaccgcaaggcc
gagcgcctgatgcgcaccgccgaaaaattcagtctgcccatcttcacgttcgtcgatacg
ccgggcgcgtatccgggcatcggcgcggaagagcgcggccagtcggaagccatcggccgc
aatctgtatgtcatggctgagctcaagacgccgatcatcacgacgatcatcggcgagggc
ggttcgggcggcgcgctcgcggtcgcggttgcagacgtcgtgatgatgctgcagttctcc
acgtactcggtcatctcgccggaaggctgcgcgtcgattctgtggaagagcgcggcgaag
gcgcccgaagcggccgaagcgctcggtcttaccgcgcatcggctgaaggcgctcggtctc
atcgataaaatcgtgaacgagccgctcggcggcgcgcatcgcgattcgaagggcatggcc
gcgctgctgcgccgtgcgctcgccgattcgctgcgtcagttccagggcatgagcgtcaac
gagctgcgcgaacgccgcttcgaaaagctgatggcgtacggcaagttcaaggaatcgctg
ccgggcgcgtaa
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