KEGG   Planktomarina temperata: RCA23_c10630
Entry
RCA23_c10630      CDS       T03229                                 
Symbol
glcB
Name
(GenBank) malate synthase GlcB
  KO
K01638  malate synthase [EC:2.3.3.9]
Organism
ptp  Planktomarina temperata
Pathway
ptp00620  Pyruvate metabolism
ptp00630  Glyoxylate and dicarboxylate metabolism
ptp01100  Metabolic pathways
ptp01110  Biosynthesis of secondary metabolites
ptp01120  Microbial metabolism in diverse environments
ptp01200  Carbon metabolism
Brite
KEGG Orthology (KO) [BR:ptp00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00620 Pyruvate metabolism
    RCA23_c10630 (glcB)
   00630 Glyoxylate and dicarboxylate metabolism
    RCA23_c10630 (glcB)
Enzymes [BR:ptp01000]
 2. Transferases
  2.3  Acyltransferases
   2.3.3  Acyl groups converted into alkyl groups on transfer
    2.3.3.9  malate synthase
     RCA23_c10630 (glcB)
SSDB
Motif
Pfam: MS_TIM-barrel MS_C MSG_insertion MS_N
Other DBs
NCBI-ProteinID: AII86614
Position
1138196..1140334
AA seq 712 aa
MPKYIQVSGLSVAEELHKFIESEALDGLPISAARFWDGLSELAHELGPKNRALLAQRSDM
QGKIDAWHIARRGQAHDAAAYQDFLKEIGYLVPEPADFSVTTQNVDPEIASTPGPQLVVP
IMNARYALNAANARWGSLYDALYGTDAMGDLPSGGGYDAARGARVIDWAKAYLDQVAPLA
SGTHADVTAYEVVGDALVPALADPSQYIGMNRDDSGALVEVVLQKNGLHIAIQIDPKGNI
GSGDKAHVDDILLESAISAIMDCEDSVAAVDGADKVVAYRNWLGLMRGDLRETVSKGGKS
FDRVLNADRSYLNAGETHTLKGRALMLVRNVGHLMTNPAVIDHDGLEIGEGLLDALCTTL
IAMHDLQRSGGNSLHGSVYVVKPKMHGPDEVAFADEIFTRVERILGLPQNTVKLGIMDEE
RRTSANLKACIKVAEARVAFINTGFLDRTGDEIHTSMEAGPMIPKGQMKVTPWINAYEDR
NVDIGLACGLQGKAQIGKGMWAMPDLMGDMLAQKMGHPKAGATCAWVPSPTAATLHATHY
HQVDVMAVQAELKAKGPRRGLDDLLTIPVAAGSNWSPDELTQEIENNAQGILGYVVRWVD
SGVGCSKVPDIHNVGLMEDRATCRISSQALANWLHHDVIDRDMVMAAMKKMAAVVDGQNA
GDASYTPMAPGFDGIAFKAACDLVFEGRVQPSGYTEPVLHRRRLELKAAQAQ
NT seq 2139 nt   +upstreamnt  +downstreamnt
atgccaaaatatatccaagtttcaggcctctcggtggccgaagagttacataagttcatc
gagtctgaagctttggacggtttgccgatcagcgccgctcggttttgggatggcctgtca
gaattggcgcatgagttgggtccaaaaaaccgggcccttctggcgcaacgttcagatatg
cagggaaaaattgacgcctggcacatcgcgcgccgcggtcaggcgcatgacgctgccgcc
tatcaagactttttgaaagagattggttatttggtgccggaaccggcggatttttcggtg
acgactcaaaatgtagaccccgaaattgcgtcaacgcccggcccgcaacttgtggtgccg
atcatgaatgcgcgctatgcgttgaacgcagccaatgcccgctggggcagcctctatgat
gcgctttacggcacggatgctatgggtgacttgccaagcggtggtggctatgatgcggcg
cgcggtgcgcgcgtgatcgactgggccaaagcctatttggatcaagtcgcgcccttggcc
tctggcacacatgcggatgtgacagcctatgaggttgtgggggatgccctggttcccgct
cttgcggatccatcgcaatatatcgggatgaaccgggacgatagcggtgcgttggtggaa
gtggttttgcagaaaaacggtctgcatattgccattcaaattgacccgaagggtaatata
ggcagcggggataaagcgcatgtggacgatatcctgctggaaagcgcgatttcggccatt
atggattgtgaagattccgtggccgcggtcgatggggcagataaggttgtggcctatcgc
aactggcttggattgatgcgcggtgatctgcgtgagacggtgagtaagggcggcaaatcc
tttgaccgggtcttaaacgcagatcgcagctatctaaatgcaggtgagacccacacactc
aaaggccgcgcgctcatgttggtgcgcaatgttgggcatttgatgacgaacccggcggtc
attgatcatgatgggctggaaattggcgaaggcttgttggacgctctgtgcacgacgctg
atcgcgatgcatgatttacagcgctcaggtggcaactcgctgcatggctcggtttatgtg
gtcaaacccaagatgcatggccccgatgaggtggcatttgcagatgaaatcttcaccagg
gtcgagcgcattttgggcttgccgcaaaataccgtaaagctcggcatcatggatgaggaa
cgccgtacaagcgccaacctcaaagcctgcatcaaagtggccgaggcgcgggtggccttt
attaatactggcttcctggatcgcacgggcgatgaaattcacacctcgatggaagcgggg
cccatgattccaaaggggcagatgaaagtcaccccttggatcaatgcctatgaagaccga
aatgttgatatcggtttggcatgcggtttgcagggcaaggcgcagattggcaaaggcatg
tgggccatgccggatttgatgggtgatatgctggcgcaaaaaatgggtcatccaaaagcg
ggtgcgacctgtgcttgggttccaagcccaacggccgcgaccctgcatgccacccattat
catcaggttgatgtgatggcggtgcaagcagagctgaaagccaaaggcccgcgccgcggt
cttgatgacctgttgaccattcctgtggccgccggcagcaattggtcacccgatgagctg
acgcaagagattgaaaacaacgcgcaaggcatcttaggctacgttgtgcgctgggtggac
agtggcgttggctgttcgaaagtgccagacatccacaatgtggggctgatggaagaccgt
gcgacgtgccgcatttcttcgcaggccttggcaaattggttgcatcatgatgttattgac
cgcgatatggtgatggccgccatgaaaaaaatggccgctgtggtcgatgggcaaaatgcg
ggtgacgccagctatacgcccatggctccgggttttgacgggatcgcttttaaagcggcc
tgtgatctcgtgtttgaaggtcgggtgcagccttccggttatacggaaccagtcctgcat
cgccggagattggaattgaaagccgcgcaggcgcagtga

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