Methanothrix harundinacea: Mhar_1526
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Entry
Mhar_1526 CDS
T01990
Name
(GenBank) ATP-citrate lyase subunit A
KO
K15230
ATP-citrate lyase alpha-subunit [EC:
2.3.3.8
]
Organism
mhi
Methanothrix harundinacea
Pathway
mhi00020
Citrate cycle (TCA cycle)
mhi00720
Other carbon fixation pathways
mhi01100
Metabolic pathways
mhi01110
Biosynthesis of secondary metabolites
mhi01120
Microbial metabolism in diverse environments
mhi01200
Carbon metabolism
Brite
KEGG Orthology (KO) [BR:
mhi00001
]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
Mhar_1526
09102 Energy metabolism
00720 Other carbon fixation pathways
Mhar_1526
Enzymes [BR:
mhi01000
]
2. Transferases
2.3 Acyltransferases
2.3.3 Acyl groups converted into alkyl groups on transfer
2.3.3.8 ATP citrate synthase
Mhar_1526
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Motif
Pfam:
Citrate_synt
Ligase_CoA
CoA_binding
Succ_CoA_lig
Motif
Other DBs
NCBI-ProteinID:
AET64888
UniProt:
G7WP47
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Position
complement(1648278..1650122)
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AA seq
614 aa
AA seq
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MTMKDYQLFDRNTRAFVYGLQTNAIQRMLDFDYLCRREVPSVAAIINPNRGGVQKVFWGT
EEILLPMYKTIPEAAAAHPFAEVMVNFASFRSAFDTTMEALASPTIKTVAIIAEGVPERM
ARVMAATARKMKKTIIGPATVGGLAAGAFRIGNTAGTIENIIESKLHRPGSVGFVSKSGG
MLNEAFNIIARNSSGVVEGIAIGGDRYPGSNLMDHILRFEANPEVAIIACLGEVGGTDEY
RIVEALKADQIKKPLVIWVTGTCSKILPGSVQFGHAGAKAQTDLETADAKNRALKEAGAI
VPASFDSYGDEIRGVYERLLAEGKVREPEEPEIPKIPMDYAKAVSEGIVRKSTNLICTIS
DDRGEEVLYAGKPLSRVLEDGMGIGGVIGLLWFKKEIPPWAAEFIELVLQIVADHGPAVS
AAHNAIVASCAGKDLITSLASGLLTIGPRFGGAIDDAAREFKRARDSGLSPEEFVRGMKA
KGVNIPGIGHRIKSVKNPDKRVELLIGYARENFARTDLLDYALSVQEITTAKKGNLILNV
DGCIGILFIDLMGSCEVFDEREIDEVIRYGYLNGLFALGRSIGIIGHILDQKRLDSRLYR
HPQDDIAYMLPKLG
NT seq
1845 nt
NT seq
+upstream
nt +downstream
nt
atgaccatgaaggactaccagctgttcgacagaaacacccgggccttcgtctacgggctc
cagaccaacgccatccagaggatgctcgacttcgactatctctgccggagggaggtcccg
agcgtcgccgccatcatcaaccccaaccggggcggggtccagaaggtcttctgggggacc
gaggagatcctcctccccatgtacaagacgatccccgaggcggcggccgcccatcctttc
gccgaggtgatggtcaacttcgcctccttcaggtccgccttcgacaccaccatggaggcc
ctcgcctcgccgaccataaagacggtggcgatcatcgccgagggggtccccgagaggatg
gcaagggtgatggccgcgacggcccgaaagatgaagaagacgatcatcggccccgccacc
gttggggggctagccgccggagccttcaggataggaaacaccgccgggaccatcgagaac
atcatcgagtcgaagctccaccggccgggctctgtcggcttcgtctccaagtccggaggg
atgctcaacgaggccttcaacatcatcgcgagaaactcgagcggcgtcgtcgaggggatc
gccatcggaggcgataggtatccggggagcaacctcatggaccacatcctccggtttgag
gccaaccccgaggtcgccatcatcgcctgcctaggcgaggtcggcggcaccgacgagtac
aggatcgtcgaggccctgaaggccgaccagataaaaaagcccctggtgatctgggtgacg
gggacctgctccaagatcctccccgggagcgtccagttcggccacgccggcgcgaaggcc
cagaccgacctagagaccgccgacgccaagaaccgggccctgaaggaggcgggggcgatc
gtccccgcctccttcgacagctacggcgacgagataagaggggtctacgagaggctcctc
gccgaggggaaggtccgggagccggaggagccggagatcccgaagatccccatggactac
gccaaggccgtctccgaggggatcgtccggaagtcgacgaacctcatctgcaccatctcc
gacgaccggggcgaggaggtcctctacgccggaaagcccctcagccgggtcctggaggac
gggatggggatcggcggggtgataggcctcctctggttcaagaaggagatccccccctgg
gcggcggagttcatcgagctcgtcctccagatcgtcgccgaccacggccccgccgtctcg
gcggcccacaacgccatcgtcgcctcctgcgccggaaaggacctgatcacctccctcgcg
agcggcctcctcaccatcggcccccggttcggcggggcgatcgatgacgccgcccgggag
ttcaagagggcccgggactcgggcctctcccccgaggagttcgtccgggggatgaaggcg
aagggggtgaacattccggggatcggccaccggatcaagagcgtcaagaaccccgacaag
agggtcgagctcctcatcggctacgcgagggagaacttcgccaggaccgacctcctcgac
tacgccctttcagtccaggagatcaccaccgccaagaagggaaacctgatcctgaacgtc
gacggctgcatagggatcctcttcatcgacctgatgggctcctgcgaggtcttcgacgag
agggagatcgacgaagtcatcaggtacggctacctcaacggcctcttcgccctcgggagg
tccatcgggatcatcggccacatcctcgaccagaagaggctcgactcgaggctctaccgc
cacccccaggacgacatcgcctacatgctccccaagctggggtga
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