KEGG   Gottschalkia acidurici: Curi_c05990
Entry
Curi_c05990       CDS       T02255                                 
Symbol
glgA
Name
(GenBank) glycogen synthase GlgA
  KO
K00703  starch synthase [EC:2.4.1.21]
Organism
cad  Gottschalkia acidurici
Pathway
cad00500  Starch and sucrose metabolism
cad01100  Metabolic pathways
cad01110  Biosynthesis of secondary metabolites
Module
cad_M00854  Glycogen biosynthesis, glucose-1P => glycogen/starch
Brite
KEGG Orthology (KO) [BR:cad00001]
 09100 Metabolism
  09101 Carbohydrate metabolism
   00500 Starch and sucrose metabolism
    Curi_c05990 (glgA)
 09180 Brite Hierarchies
  09181 Protein families: metabolism
   01003 Glycosyltransferases [BR:cad01003]
    Curi_c05990 (glgA)
Enzymes [BR:cad01000]
 2. Transferases
  2.4  Glycosyltransferases
   2.4.1  Hexosyltransferases
    2.4.1.21  starch synthase (glycosyl-transferring)
     Curi_c05990 (glgA)
Glycosyltransferases [BR:cad01003]
 Polysaccharide
  Storage polysaccharide
   Curi_c05990 (glgA)
SSDB
Motif
Pfam: Glyco_transf_5 Glycos_transf_1 Glyco_trans_1_4 GT4-conflict Glyco_transf_4 Glyco_trans_4_4
Other DBs
NCBI-ProteinID: AFS77673
UniProt: K0AUW9
Position
666708..668144
AA seq 478 aa
MKVLIVASESVPFIKTGGLADVIGSLPKALKDKNIDVRVMLPLYKDIIFKYGEKLKYKTN
KNVQLSWRSQYCGIFEMEYDGVIFYFIDNEYYFKRDGVYGYYDDAERFAFYSKAVLDVLP
ILDFKPDILHCHDWHTGLVSVFLKTHYMHNDFYKNMKTLFTIHNLHYQGVFSKDILRDIL
DLGEENFTIETLEYSGAVNCMKGGIVFSDLISTVSKTYAKEITYPYFGEGLDGILRKREG
DLRGIVNGIDEKLYDPQNDPYIYHNYNLETIENKVKNKLKLQEELSLNLNENTPIISIVS
RLVDIKGMDLVIHVIEEIMNTLDVQIVILGTGDKVYEDTFKYMEYKYSGRISANIMFNNE
LANKVYASSDMLLMPSRLEPCGLSQLIALRYGTIPIVRETGGLNDTVKFFNKATGEGNGF
TFKNFNAHDMLFTIKKAIDTYRNEDMWNKIISNAMKEDYSWDNSALEYIELYNKLAVK
NT seq 1437 nt   +upstreamnt  +downstreamnt
ttgaaagttctaatcgttgcatcagaatccgtcccctttattaagacaggagggctagca
gatgttattggatcactacctaaagcacttaaagataagaatatagatgttagggtaatg
ctacctttgtataaggatataatttttaaatatggggaaaaattaaaatacaaaactaat
aaaaatgtacaactttcatggagaagtcaatattgtggaatatttgagatggaatatgat
ggtgttatattctactttatagataatgaatactatttcaaaagagatggtgtatatgga
tattatgatgatgctgaaaggtttgcattctatagcaaggcagttttagatgtattacct
atattagactttaaaccagatatattacactgtcatgattggcatactgggcttgtaagt
gtgttcttaaaaactcattatatgcataatgacttttataaaaatatgaaaacacttttt
actatacacaacttacactatcaaggagtgttttcaaaagatatactaagggatatttta
gacttgggagaagagaactttacaatagaaacactagaatatagtggagcagttaactgt
atgaaaggcggaatagtattttctgacttaataagtactgttagtaaaacttatgctaaa
gaaataacttacccttactttggagaaggactagatggaatactaagaaagcgtgaagga
gacttaaggggaatagttaatggtatagacgagaagctatacgatcctcagaatgatcca
tatatctaccataattataatcttgaaacaatagagaataaagtcaaaaacaagttgaaa
cttcaagaggaactatctcttaatttaaatgaaaacacaccgattattagcatagtgtct
agactagttgacataaagggaatggatttagtcatacatgttatagaggagataatgaat
acactagatgtacagatagttatattagggacaggggataaagtctatgaagatactttt
aaatatatggagtataaatatagtggcaggatatcagcaaacataatgtttaataatgaa
cttgcaaataaggtatatgcatcatctgacatgcttttgatgccttcaagacttgaacct
tgtgggctaagtcaacttatagccttaagatatgggactatacctattgtaagagaaaca
ggtggacttaatgatacagtaaagttttttaataaagctacaggagaagggaacggtttt
acgtttaaaaactttaatgctcatgatatgttatttactataaagaaagctatagatact
tatagaaacgaagatatgtggaataagataataagtaatgctatgaaagaggattatagt
tgggataattcagcacttgaatatatagagctatacaacaaattagctgtaaaataa

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