Chlorobaculum tepidum: CT1088
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Entry
CT1088 CDS
T00088
Name
(RefSeq) citrate lyase subunit 2
KO
K15230
ATP-citrate lyase alpha-subunit [EC:
2.3.3.8
]
Organism
cte
Chlorobaculum tepidum
Pathway
cte00020
Citrate cycle (TCA cycle)
cte00720
Other carbon fixation pathways
cte01100
Metabolic pathways
cte01110
Biosynthesis of secondary metabolites
cte01120
Microbial metabolism in diverse environments
cte01200
Carbon metabolism
Module
cte_M00173
Reductive citrate cycle (Arnon-Buchanan cycle)
cte_M00614
Anoxygenic photosynthesis in green sulfur bacteria
Brite
KEGG Orthology (KO) [BR:
cte00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
CT1088
09102 Energy metabolism
00720 Other carbon fixation pathways
CT1088
Enzymes [BR:
cte01000
]
2. Transferases
2.3 Acyltransferases
2.3.3 Acyl groups converted into alkyl groups on transfer
2.3.3.8 ATP citrate synthase
CT1088
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Ortholog
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Gene cluster
GFIT
Motif
Pfam:
Citrate_synt
Ligase_CoA
Succ_CoA_lig
CoA_binding
Motif
Other DBs
NCBI-GeneID:
1006925
NCBI-ProteinID:
NP_661979
UniProt:
Q8KDG2
LinkDB
All DBs
Position
complement(1026103..1027935)
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AA seq
610 aa
AA seq
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MSILANKDTRAVIIGGVAGVNAAKRMAQFDYLINRPLTVQAFVYPPEAGQQKEIFRGGEL
KNVTVYPSLAPALNEHPDINTALIYLGASRATEAAMEALESPNIQLVSMITEGVPEKDAK
RLKKLAQKLGKMLNGPSSIGIMSAGECRLGVIGGEYRNLKLCNLYRQGSFGVLTKSGGLS
NEAMWLCAQNGDGITSAVAIGGDAYPGTDFVTYLEMFEKDPATKAVVMIGEVGGNLEEEA
AEWLAAEPRRIKLIAAIGGTCQEVLPQGMKFGHAGAKEGKKGAGSARSKMNALREAGALV
PDTFGGLSKAIKQVYEELLASGAIKPKPEIDEALLPELPPSVQEVMKQGEVVVEPLIRTT
ISDDRGEEPRYAGYAASELCSKGYGIEDVIGLLWSKKLPSREESEIIKRIIMISADHGPA
VSGAFGTILAACAGIDMPQAVSAGMTMIGPRFGGAVTNAGKYFKMGVKEYPNDIPGFLAW
MKKNVGPVPGIGHRVKSLRNPDQRVKYLVSYVKNETSLHTPILNYALEVEKITTAKKENL
ILNVDGTIGCILMDLGFPEHSLNGFFVLARTIGMIGHWIDQNNQNSRLIRLYDYLINYAV
KPERPVPDKK
NT seq
1833 nt
NT seq
+upstream
nt +downstream
nt
gtgagcattctcgcaaataaagatacccgggcggtcatcattggtggtgtggcaggcgtc
aatgcggcaaaacgcatggcccagttcgactacctgatcaaccgtccgctgaccgtccag
gctttcgtgtatccgcccgaagcgggccagcagaaagaaatcttccgcggtggcgaactc
aaaaacgttaccgtctatccgtctctggctccagctctcaatgagcatccggacatcaac
accgccctcatctacctcggcgcatcgagagcgaccgaggccgcgatggaagcgcttgaa
tccccgaacattcagctggtctcgatgatcactgaaggtgttccggaaaaggacgccaag
cggctgaaaaaacttgcccagaagcttggcaagatgctgaacggcccgtcgtcgattggc
atcatgtctgctggcgagtgccgtctcggtgtgatcggcggcgagtaccgcaacctgaaa
ctctgcaacctctatcgtcagggttcgttcggtgttctaaccaagtccggcggtctgtcc
aacgaggcgatgtggctttgcgcccagaatggtgatggtatcacctctgccgtggctatt
ggcggtgacgcctatccgggcaccgatttcgtcacctatcttgaaatgttcgagaaggat
cctgcaaccaaggcggtcgtcatgatcggcgaggttggcggtaatctcgaagaggaagct
gcagagtggctggcagccgaaccacgccgcatcaagctgatcgccgccattggcggtacc
tgccaggaggttctcccgcagggtatgaagtttggtcacgctggcgcgaaagagggcaaa
aagggcgctggctcagcccgctccaagatgaacgctctgcgtgaagccggtgcgctcgtg
cccgatacctttggcggtctgagcaaggcgatcaagcaggtctatgaagagttgctcgct
tctggcgccatcaagccgaagcccgaaatcgacgaggcgctgctgcctgagctaccgccg
agcgttcaggaggttatgaagcagggtgaagtggttgtcgaaccgctcatccgcaccacc
atctccgacgatcgtggcgaagagcctcgctatgccggttatgccgcttcggagctttgc
tcgaaagggtatggtatcgaggatgtcatcggcctgctctggagcaagaagcttccgagc
cgcgaggagtccgagatcatcaagcgcatcatcatgatctctgctgaccacggtccggca
gtgtctggcgcctttggcactatcctcgccgcctgcgcaggcatcgatatgccgcaggcc
gtctctgccggtatgaccatgatcggtccgcgctttggcggtgctgtgaccaacgctggc
aaatacttcaaaatgggtgtcaaggagtatccgaacgacattcccggcttccttgcctgg
atgaagaaaaacgtcggcccggttcccggcattggccacagggtcaagagtctcaggaat
cccgaccagcgcgtgaagtacctcgtcagctacgtgaagaacgaaacctcgctgcacacg
ccgattctcaactacgcgctcgaagtcgaaaagatcacgaccgccaagaaggagaacctg
atcctgaacgtcgatggcaccataggttgcatccttatggacctcggcttcccggagcac
tctctgaatggcttcttcgtgctggcccgtaccattggcatgatcggccactggatcgac
cagaacaaccagaactcgcgtctgatcaggctctacgattacctgatcaactacgccgtc
aaaccggaacgcccggttcccgacaagaagtaa
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