Chlorobium phaeobacteroides DSM 266: Cpha266_1306
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Entry
Cpha266_1306 CDS
T00439
Name
(GenBank) ATP citrate lyase subunit 2
KO
K15230
ATP-citrate lyase alpha-subunit [EC:
2.3.3.8
]
Organism
cph
Chlorobium phaeobacteroides DSM 266
Pathway
cph00020
Citrate cycle (TCA cycle)
cph00720
Other carbon fixation pathways
cph01100
Metabolic pathways
cph01110
Biosynthesis of secondary metabolites
cph01120
Microbial metabolism in diverse environments
cph01200
Carbon metabolism
Module
cph_M00173
Reductive citrate cycle (Arnon-Buchanan cycle)
cph_M00614
Anoxygenic photosynthesis in green sulfur bacteria
Brite
KEGG Orthology (KO) [BR:
cph00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
Cpha266_1306
09102 Energy metabolism
00720 Other carbon fixation pathways
Cpha266_1306
Enzymes [BR:
cph01000
]
2. Transferases
2.3 Acyltransferases
2.3.3 Acyl groups converted into alkyl groups on transfer
2.3.3.8 ATP citrate synthase
Cpha266_1306
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SSDB
Ortholog
Paralog
Gene cluster
GFIT
Motif
Pfam:
Citrate_synt
Ligase_CoA
CoA_binding
Succ_CoA_lig
Motif
Other DBs
NCBI-ProteinID:
ABL65337
UniProt:
A1BG10
LinkDB
All DBs
Position
complement(1497091..1498923)
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AA seq
610 aa
AA seq
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MSILANKDTRAVIIGGIAGLNAARRMAQFDFLVNRPLTVQAFVYPPEEGQQKEIYRGGEL
KNIAVYSSLEKALEEHPEINTALIYIGASRAFQSAKEALESKGIKLVSMITEGVPEKDAK
RLRKLAAENNKLFNGPSSIGIMSAGECRLGVIGGEFKNLKLCNLYRPGSFGVITKSGGLS
NEAMWLCAQNGNGITTAVAIGGDSFPGTDFVTYLEMFENDPDTKAVVIVGEVGGTLEEEA
ADWLAAEKRRIRLIAAIGGTCQEVLPQGMKFGHAGAKEGKKGLGSARSKMNALRDAGALV
PDTFGGLSKAIKQVYEELLADGAIKPEPDIDEALLPELPLKVQEIMKQGEVIVEPLIRTT
ISDDRGEEPRYVGYAASELCEKGYGIEDVIGLLWNKKLPSRQESEILKRIIMISADHGPA
VSGAFGSIIAACAGIDMPQAVSAGMTMIGPRFGGAVTNAGKYFKHGVKDFPNDIPGFLSW
MKLNVGPVPGIGHRVKSVKNPDKRVKYLVDYVKNSTSLHTPCLDYALEVEKITTAKKDNL
ILNVDGTIGCILVDLEFPEYSLNGFFVLARTIGMIGHWIDQNNQSARLIRLYDYLINYAV
KEEREVPERK
NT seq
1833 nt
NT seq
+upstream
nt +downstream
nt
gtgagtattttagcaaataaagacacgcgagcggttatcatcggcggtatagccggattg
aacgccgcaaggaggatggcccagtttgactttctcgtgaacagaccactgactgttcag
gcatttgtctatcctcccgaagaaggtcagcaaaaagagatttaccgcggtggcgaactg
aaaaatattgcggtatactcatcgcttgaaaaagcacttgaggagcatcccgagatcaat
actgcgctgatctatatcggcgcatcaagggctttccagtcggcaaaggaagctcttgag
tcaaaaggcatcaagcttgtttccatgattaccgaaggggtgcctgaaaaagatgccaag
agattgcgcaaacttgccgcggaaaacaacaaactgtttaacggcccctcttcaatcggc
atcatgtcggcaggcgagtgcaggctcggcgttatcggaggtgaattcaaaaacctcaaa
ctctgcaatctctatcgtccgggttcattcggcgttatcaccaaatccggcggtctttca
aacgaagccatgtggttgtgcgcccagaacggtaacggtattaccacggccgttgccatt
ggcggcgactcattcccgggcacagacttcgttacctatcttgaaatgtttgaaaacgac
cccgataccaaggctgtggttatcgtcggggaggttggaggaactctcgaagaggaagct
gccgactggctcgctgcagaaaaacgccgcataaggctcattgccgcaatcggcggaacc
tgccaggaagtacttccgcagggaatgaagttcggacatgccggtgccaaggaggggaaa
aaaggtcttggttcagcacgctcgaaaatgaatgctctgcgtgacgcaggcgcgcttgtt
cccgatactttcggaggcctcagcaaagctatcaagcaggtttacgaagaactgcttgcc
gatggcgccatcaaacctgaaccggatatcgatgaagcgcttcttccggaacttccgctg
aaggttcaggaaatcatgaagcagggcgaagtaattgtagaacccctgattcgcaccacc
atttccgacgaccgtggcgaagagcctcgctatgttggctatgccgcatccgagctttgt
gagaaagggtacggtatcgaagatgtcatcggccttttgtggaataaaaaacttccgtca
aggcaggagtctgaaatactcaaacgcattatcatgatctcggccgatcacggcccagcg
gtttcaggcgcattcggttcaattatagctgcctgtgccggtatcgacatgcctcaggcg
gtttcggcaggtatgaccatgatcgggccacggttcggcggggcagtaaccaatgccggt
aaatatttcaagcacggcgtcaaggatttccccaatgatattccgggatttctctcatgg
atgaaacttaacgtcggaccggttccgggtatcggacatcgagtcaaaagcgtgaagaat
cctgacaagcgggtgaagtatcttgttgattatgtcaaaaacagtacatctcttcatacg
ccatgtcttgactacgcgcttgaagtagaaaaaatcacaaccgcaaagaaagacaatctc
attctgaacgttgatggaacgatcggctgtattctggtggatctcgagttcccggaatac
tcgctcaacggcttctttgtgcttgcccgcacaatcggcatgatcggacactggatcgat
cagaacaatcagtccgcacgactgatcagactgtacgattatctgatcaactatgccgtc
aaggaagaacgagaggttcctgaaaggaagtaa
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