Nitrospira defluvii: NIDE0835
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Entry
NIDE0835 CDS
T01281
Symbol
aclA
Name
(GenBank) ATP citrate lyase, alpha subunit
KO
K15230
ATP-citrate lyase alpha-subunit [EC:
2.3.3.8
]
Organism
nde
Nitrospira defluvii
Pathway
nde00020
Citrate cycle (TCA cycle)
nde00720
Other carbon fixation pathways
nde01100
Metabolic pathways
nde01110
Biosynthesis of secondary metabolites
nde01120
Microbial metabolism in diverse environments
nde01200
Carbon metabolism
Brite
KEGG Orthology (KO) [BR:
nde00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
NIDE0835 (aclA)
09102 Energy metabolism
00720 Other carbon fixation pathways
NIDE0835 (aclA)
Enzymes [BR:
nde01000
]
2. Transferases
2.3 Acyltransferases
2.3.3 Acyl groups converted into alkyl groups on transfer
2.3.3.8 ATP citrate synthase
NIDE0835 (aclA)
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Gene cluster
GFIT
Motif
Pfam:
Citrate_synt
Ligase_CoA
Succ_CoA_lig
CoA_binding
Motif
Other DBs
NCBI-ProteinID:
CBK40601
UniProt:
D8PBJ2
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All DBs
Position
798226..800046
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AA seq
606 aa
AA seq
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MSILANKDTRVVIQGGQAGVNAARRMAEFCYLIKRPLNVEAFVYPPDAGKSNEIPYGSGL
IAIPVYKSIAEATKHHPTLNTSLVYIGADRAMKGGMEALDDSHIKVVSMITEGVPEKDAK
ILGAHARKLGKVFNGPSSIGIISAGACRLGVIGGAFDNLVLSKLYREGSFGVITKSGGLS
NEIIWICSQFADGITTAIGIGGDAYPGTDYVSYLEMFENDPQTKAVVIVGEMGGDLEERA
AEWYGAKKRRVKLIAVVSGFCQESLPKGMKFGHAGAKEGMKGEGSARSKSDALKKAGALV
PPTFGALGPAIKETYQDLLKSGQVKEPVEPAMLPRLPKTVEEAMKADEVMVSPLIRTTIS
DDRGDEPCYDGYPASELINKGYEIPHVIGLLWDKRLISKQEAEIIKRIMMLSADHGPCVS
GAYATILAACAGIGLSQSVAAGMIMIGPRFGGAVTDAGRFFKYAVDSKMSVDEFLAYMKK
NHGPVPGIGHRVKSLRNPDKRVKELVGYVKSLNIKTPCLDFALEVEKITSVKKDNLILNV
DGTMAAVLVDIGFPVDSLNGFFILSRTIGLIGHWVDQKRQDSRLIRLFDYLVNYAAPKRR
EVPPLK
NT seq
1821 nt
NT seq
+upstream
nt +downstream
nt
atgagtattctggcaaacaaagacacccgtgtggtgatccagggtggtcaagccggtgtc
aacgctgcccgccgtatggccgagttctgttatctcattaagcgtccgctcaatgttgag
gcgtttgtctacccacccgatgccggcaagagcaatgagatcccatacggcagtggcctg
atcgccattccggtttacaagtccattgctgaagccaccaagcatcatccgaccctgaat
accagtctcgtatacattggtgcagaccgcgcgatgaagggtggcatggaggcgctggac
gattctcacatcaaggtggtctcaatgatcaccgagggggtgccggaaaaagatgccaag
attcttggcgctcatgcgcgcaagttggggaaggtctttaacggcccctcatccattggt
atcatctctgctggagcgtgccggcttggcgtaattggcggtgcgttcgacaatcttgtt
ctctccaagctttatcgtgaaggatcgttcggcgtcatcaccaagtccggcggtctctcg
aacgaaatcatttggatctgctctcagtttgccgacgggatcacgacggctatcggtatc
ggcggtgatgcctatcctggcaccgattacgtcagttatcttgagatgtttgagaacgat
ccccaaaccaaggcggtcgttattgtcggagagatgggcggcgatctcgaagagcgggcg
gcagaatggtatggcgcgaaaaagcgacgggtaaagctgattgccgtcgtctctggcttc
tgtcaggagagtttgccgaaaggcatgaaattcggtcatgccggcgcgaaagagggcatg
aagggtgaaggatcagctcggtccaagtccgatgcgctgaagaaagccggggccctcgtg
ccgccaacttttggcgcgcttggtcctgccatcaaggaaacttatcaagatctcttgaag
tcgggccaggtcaaggagccggtcgagccggctatgttgccccggttgccaaaaaccgtc
gaggaggcgatgaaggccgatgaggtcatggtttcgccgctgatccgtacgaccatcagc
gatgaccgcggcgatgagccctgctacgacggttatcctgcctctgagctcattaacaag
ggctacgaaattcctcacgtcatcggtcttttgtgggacaagcggctgatctcgaagcaa
gaggctgaaatcattaagcgcatcatgatgctttccgctgatcacggtccctgcgtgagt
ggcgcatacgcgacaattcttgcggcttgtgccgggatcgggctgtcgcaatcagtcgcc
gcaggcatgattatgattggcccgcgcttcggcggtgcggtcactgatgccggacgattc
tttaaatatgctgttgatagcaagatgtcggtcgacgaattcttggcctacatgaagaaa
aaccatgggccggttccgggaattggtcatcgcgtgaagagtctgcgcaacccggacaag
cgggtgaaggaattggtcgggtacgtgaagagtttgaacatcaagactccctgtctggat
ttcgcgctggaagtggagaaaattacctccgtgaaaaaagacaatctgattctgaatgtc
gatgggacaatggcggccgtattggtcgatatcggtttccctgtcgacagcttgaacgga
ttcttcatactttcgcggaccattgggctaattggccattgggtcgatcaaaaacgtcag
gatagccgcctgattcgtttgtttgattatctcgtgaattatgccgcacccaagaggcga
gaagttccgccgttgaagtaa
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