Entry |
|
Symbol |
sucA
|
Name |
(GenBank) oxoglutarate dehydrogenase (succinyl-transferring), E1 component
|
KO |
|
Organism |
rcp Rhodobacter capsulatus
|
Pathway |
rcp01110 | Biosynthesis of secondary metabolites |
rcp01120 | Microbial metabolism in diverse environments |
rcp01210 | 2-Oxocarboxylic acid metabolism |
|
Module |
rcp_M00011 | Citrate cycle, second carbon oxidation, 2-oxoglutarate => oxaloacetate |
|
Brite |
KEGG Orthology (KO) [BR:rcp00001]
09100 Metabolism
09101 Carbohydrate metabolism
00020 Citrate cycle (TCA cycle)
RCAP_rcc00724 (sucA)
09108 Metabolism of cofactors and vitamins
00785 Lipoic acid metabolism
RCAP_rcc00724 (sucA)
Enzymes [BR:rcp01000]
1. Oxidoreductases
1.2 Acting on the aldehyde or oxo group of donors
1.2.4 With a disulfide as acceptor
1.2.4.2 oxoglutarate dehydrogenase (succinyl-transferring)
RCAP_rcc00724 (sucA)
|
SSDB |
|
Motif |
|
Other DBs |
|
LinkDB |
|
Position |
794445..797414
|
AA seq |
989 aa
MNDHTPNDQFHASSFLQGANADYVEQLYARYAADPTSVDPNWASFFESLGDTELDAKRSA
HGPSWARADWPPSPNDDLTAAMTGEWPMPVAPKENKAAAEKLAAAVKAAGVQVSDEAIKR
AVLDSIRALMIIRAYRIRGHLIADLDPLGMRSGESHPELDPRSYGFTEADMDRMIFIDNV
LGLQVASMRQILDVLKRTYCGTFALQYMHISNPEEAAWLKERIEGYGKEIAFTREGRRAI
LNKLVEAEGFEKFLHVKYTGTKRFGLDGGEALIPAMEQIIKRGGALGLKEVVIGMPHRGR
LNILATVMAKPYRAIFHEFQGGSYKPEDVDGSGDVKYHLGASSDRSFDGHTVHLSLTANP
SHLEAVNPVVLGKVRAKQDQAHDEDRTQVLSVLLHGDAAFAGQGIVAECLQLSGIKGHRT
GGCIHIVVNNQIGFTTAPHFSRTSPYPTDIALMVEAPIFHVNGDDPEAVVHAAKVATEFR
QKFHKDVVIDIFCYRRFGHNEGDEPMFTNPAMYKNIKGHKTTLQLYTERLVADGLIPEGE
IEDMKAAFQAKLNEEYEAGKTFRPNKADWLDGRWKHLDRQSSDYDAGVTPISPELMAEVG
KALTSYPEDFDIHKTVARQLEAKKAMFETGKGFDWATAEALAFGSLLAEGFPVRLAGQDC
TRGTFSQRHSGLIDQATEERYYPLNHIKPGQAKYEVIDSMLSEYAVLGFEYGYSLAEPNA
LTLWEAQFGDFANGAQIMFDQFINSGERKWLRMSGLVCLLPHGFEGQGPEHSSARLERYL
QLSAEDNWIVANCSTPANYFHILRRQIHRNFRKPLILMTPKSLLRHPLCTSTAAEFTTGS
FFRRVMWDDADAQHHGNSEMTTKPDAEISRVVMCSGKVYYDLLAERDKRGLEDVYILRIE
QLYPFPAHSLVTELGRFKEAQIIWCQEEPKNQGAWSFIEPNLEWVLAKIGAKHGRARYAG
RAASASPATGLASRHKAEQDALVQDALEG |
NT seq |
2970 nt +upstreamnt +downstreamnt
atgaacgatcacacaccgaacgaccagttccacgcttcgtccttcctgcaaggggcgaac
gcggattatgtcgaacagctttacgcccgctatgccgccgatccgacctcggtcgatccg
aactgggcgtccttcttcgaaagcctgggcgacacggaacttgacgccaagcgctcggcc
cacgggccgagctgggcccgcgccgactggccgccgtcccccaatgacgatctgacggcg
gcgatgaccggcgaatggccgatgcccgtcgcgcccaaggaaaacaaggccgcggccgag
aagctggcggcggcggtgaaggccgcgggggtgcaggtctcggacgaggcgatcaagcgg
gcggtgctcgattccatccgcgcgctgatgatcatccgcgcctatcggatccgcggtcac
ctgatcgccgatctggatccgctgggcatgcgctcgggcgagtcgcacccggaactggat
ccgcgctcttacggtttcaccgaagccgacatggaccggatgatcttcatcgacaacgtg
ctgggtctgcaggtcgcctcgatgcggcagatcctcgacgtgctcaagcgcacctattgc
ggcaccttcgcgctgcaatacatgcatatttcgaaccccgaggaagccgcctggctgaaa
gagcggatcgagggctacggcaaggaaatcgccttcacccgcgaaggccgccgcgccatc
ctgaacaagctggtcgaggccgagggcttcgagaaattcctgcatgtgaaatataccggc
accaagcgcttcggcctggatggcggcgaggcgctgatcccggcgatggaacagatcatc
aagcgcggcggcgcgcttggcctcaaggaagtggtcatcggcatgccgcaccgcggccgg
ttgaacattctggccacggtgatggcgaaaccctaccgggcgatcttccacgaatttcag
ggcggctcctacaagcccgaagacgtggacggttcgggcgacgtgaaatatcaccttggc
gcctcgtcggaccgctcgtttgacggccacaccgtgcacctgtcgctgaccgcgaacccc
tctcaccttgaggcggtgaacccggtcgttctgggcaaggtccgcgccaagcaggatcag
gcccatgacgaggaccgcacccaggttctgtcggtgctgctgcatggcgatgcggccttt
gccgggcaggggatcgtggcggaatgtctgcagctttcgggcatcaaggggcaccgcacc
ggcggctgcatccatatcgtcgtgaacaaccagatcggcttcaccacggcgccgcatttc
agccgcacctcgccctatccgaccgatatcgcgctgatggtggaggcgccgatcttccac
gtcaacggcgacgacccggaggccgtcgtgcatgccgcgaaagtggcgacggaattccgg
cagaaattccacaaggacgtggtcatcgacatcttctgctaccgccgcttcggtcacaac
gaaggcgacgagccgatgttcaccaacccggcgatgtacaagaacatcaagggccacaag
accacgctgcagctttacaccgaacgtctggtcgccgacggtctcatccccgagggcgag
atcgaggacatgaaggcggccttccaggcgaagctgaacgaggaatacgaggcgggcaag
accttccgcccgaacaaggcggactggcttgacggccgctggaagcaccttgaccggcaa
agctcggattacgacgcgggcgtcaccccgatttcgcccgaactgatggccgaggtgggc
aaggcgctgacctcctaccccgaggatttcgacatccacaagaccgtcgcccgccagctg
gaggcgaaaaaggcgatgttcgaaaccggcaagggctttgactgggccacggccgaggcg
ctggctttcggctcgcttctggccgagggcttcccggtgcgtctggccgggcaggactgc
acgcggggcaccttcagccagcgccattccgggctgatcgatcaggcgaccgaggaacgc
tattatccgctcaaccacatcaagcccggtcaggcgaaatacgaagtcatcgacagcatg
ctttcggaatatgccgtgcttggcttcgagtatggctattcgctggcggagcccaacgcg
ctgacgctgtgggaggcgcagttcggcgatttcgccaatggcgcgcagatcatgttcgac
cagttcatcaactcgggcgagcggaaatggctgcggatgtcggggcttgtctgcctgctg
ccgcatggcttcgaggggcaggggccggaacattcctcggcccggcttgaacgctatctg
caactcagcgcggaagacaactggatcgtcgcgaactgctcgacgccggcgaactacttc
cacatcctgcgccggcagatccaccgcaacttccgcaagccgctcatcctgatgacgccg
aaatcgctgctgcgccatccgctgtgcacctcgaccgcggcggaattcaccaccggctcc
ttcttccggcgcgtgatgtgggacgatgccgatgcgcagcatcacggcaattcggagatg
accacgaaacccgatgccgagatcagccgcgtcgtgatgtgttcgggcaaggtctattac
gacctgctggccgaacgcgacaagcggggtctggaggatgtctacatcctgcgcatcgag
cagctttaccccttcccggcgcattcgctggtgacggaactgggccgcttcaaggaggcg
cagatcatctggtgtcaggaagagccgaagaaccagggcgcctggagcttcatcgagccg
aacctggaatgggtgcttgcgaagatcggggcgaagcatggccgggcgcgttatgcgggc
cgtgccgcctcggcctcgcccgcgacgggtctggcaagccgccacaaggccgagcaggac
gcgctcgtccaagacgcgctggagggctga |