KEGG   Sedimenticola thiotaurini: AAY24_10830
Entry
AAY24_10830       CDS       T03943                                 
Name
(GenBank) hypothetical protein
  KO
K01638  malate synthase [EC:2.3.3.9]
Organism
seds  Sedimenticola thiotaurini
Pathway
seds00620  Pyruvate metabolism
seds00630  Glyoxylate and dicarboxylate metabolism
seds01100  Metabolic pathways
seds01110  Biosynthesis of secondary metabolites
seds01120  Microbial metabolism in diverse environments
seds01200  Carbon metabolism
Module
seds_M00012  Glyoxylate cycle
Brite
KEGG Orthology (KO) [BR:seds00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00620 Pyruvate metabolism
    AAY24_10830
   00630 Glyoxylate and dicarboxylate metabolism
    AAY24_10830
Enzymes [BR:seds01000]
 2. Transferases
  2.3  Acyltransferases
   2.3.3  Acyl groups converted into alkyl groups on transfer
    2.3.3.9  malate synthase
     AAY24_10830
SSDB
Motif
Pfam: MS_TIM-barrel MS_C MS_N
Other DBs
NCBI-ProteinID: AKH22211
UniProt: A0A0F7K104
LinkDB
Position
2364487..2366040
AA seq 517 aa
MRVNAPLAEGQERILTPEALRFVADLEQRFGQRRQQLLGLRADRQRRFNEGELPAFRPET
AELRRTAWRVKQTPADLRGRRVEIVGPVDQQSVMSAFQSGASCFVMDFEDSHAPTWNGTL
EGQLNLYDAVRGDFDRPDAGNGQDRGSDSSRIALSMRPRGWHLSETHLQVNGNPVSASLF
DFGLFMFHNGLQLLEQGATPSFHLPKLESYIEAQLWSDLFAYTEESLGLNHGDICCTVAI
ETLPAAFEMDEMLYALRDYALGLDFGRRNYIFSFIKRFQADPARVLPEHKQITVDSGFVQ
ACSRLLLETCYQRGAHATCAIAAAMPAEADSDAVKRLEADLAQPLTEGYDAVRVTHPGLV
SLANRQLERCPSRADRRPTESAVSEADLLQPAQGTITASGFGDNISLALHYLAGWLGGQG
TVMINHCLEDAASAEIARAQIWQWIQHPRGILEDGQEITIELFQQKLSQELERVRQEIGE
PALTTDHYSTAAELLGELVDTNHFIEFLTLPAYHKLA
NT seq 1554 nt   +upstreamnt  +downstreamnt
attcgggtcaatgcgccactggcagagggtcaggaacggattctgacgccagaggcgctc
cgttttgttgccgacctggagcagcgttttggtcagcgccgccagcaactactggggctg
cgggcagatcggcagcgtcgtttcaatgaaggcgaactgcccgcattccggccggaaacc
gcggagctccggcgcaccgcgtggcgggtaaagcagaccccggccgatttgcgagggcgg
cgggtggagatcgtcggcccggtggatcaacagagcgtgatgagcgccttccagtccggc
gccagctgtttcgtcatggacttcgaggatagccacgcacccacctggaacggcacactc
gagggccagcttaacctgtatgatgctgtgcgcggcgacttcgatcgcccggacgccggc
aacggacaggatcgggggtcggactccagcagaatcgccctgagcatgcggccccgcggc
tggcatctcagtgagacccatctgcaagtgaacggtaatccggtctccgccagcctgttt
gattttggcctgttcatgttccacaacggcctgcaactgctggaacagggcgcgacgccc
agtttccacctgcctaagctggagagctatatcgaggcacagctttggagtgatctgttc
gcctacaccgaagagagcctgggcctgaaccatggcgacatctgctgcaccgtagccatc
gaaaccctgccggcggccttcgagatggacgagatgctttacgccttgcgggattacgca
cttggtctagactttggtcgtcgtaactacatcttcagtttcatcaagcgattccaggcc
gaccctgcccgggtgctcccggagcacaagcagataactgtagatagcggttttgtacag
gcctgttcacgcctgttgcttgaaacctgctatcagcgcggtgcccatgcaacctgcgcc
attgccgcagcaatgcccgccgaggcagacagcgacgcggtgaaacggctggaagccgat
ctggcacagccactgaccgaagggtacgacgctgtccgggtgacccatcccggcctggtg
agcctggccaaccgccaactggagcgctgtccgtcgcgggctgatcgccgcccgactgaa
tcagccgtcagtgaagccgacctgttgcagccagcgcaaggaacgatcaccgcgtccggc
ttcggtgacaatatcagcctggcgctgcactacctggccggctggttgggtggacagggg
accgtaatgatcaaccattgcctggaagatgccgcctctgccgagatcgcccgagcccag
atctggcaatggatacaacacccgcgggggattttggaggatggccaggagatcacgatc
gagctgtttcagcaaaaactctcccaggagttggagcgggtacgacaggagatcggcgaa
ccggccctgacaaccgaccactactcgacagcagcggaactgctgggcgaactggtcgac
acaaaccattttatcgagtttcttacactgcccgcataccataagctggcctga

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