KEGG   Lipotes vexillifer (Yangtze River dolphin): 103075027Help
Entry
103075027         CDS       T03090                                 

Gene name
GAD1
Definition
(RefSeq) glutamate decarboxylase 1
  KO
K01580  
glutamate decarboxylase [EC:4.1.1.15]
Organism
lve  Lipotes vexillifer (Yangtze River dolphin)
Pathway
Alanine, aspartate and glutamate metabolism
beta-Alanine metabolism
Taurine and hypotaurine metabolism
Butanoate metabolism
Metabolic pathways
GABAergic synapse
Type I diabetes mellitus
Module
GABA (gamma-Aminobutyrate) shunt
Brite
KEGG Orthology (KO) [BR:lve00001]
 Metabolism
  Carbohydrate metabolism
   00650 Butanoate metabolism
    103075027 (GAD1)
  Amino acid metabolism
   00250 Alanine, aspartate and glutamate metabolism
    103075027 (GAD1)
  Metabolism of other amino acids
   00410 beta-Alanine metabolism
    103075027 (GAD1)
   00430 Taurine and hypotaurine metabolism
    103075027 (GAD1)
 Organismal Systems
  Nervous system
   04727 GABAergic synapse
    103075027 (GAD1)
 Human Diseases
  Endocrine and metabolic diseases
   04940 Type I diabetes mellitus
    103075027 (GAD1)
Enzymes [BR:lve01000]
 4. Lyases
  4.1  Carbon-carbon lyases
   4.1.1  Carboxy-lyases
    4.1.1.15  glutamate decarboxylase
     103075027 (GAD1)
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Motif Motif
Other DBs
NCBI-GeneID: 
NCBI-ProteinID: 
LinkDB All DBs
Position
Un
AA seq 594 aa AA seqDB search
MASSTPSSSATSSNAGADPNTTNLRPTTYDTWCGVAHGCTRKLGLKICGFLQRTNSLEEK
SRLVSAFKERQSSKNLLSCESSDRDGRFQRTETDFSNLFARDLLPAKNGEEQTVQFLLEV
VDILLNYVRKTFDRSTKVLDFHHPHQLLEGMEGFNLELSDHPESLEQILVDCRDTLKYGV
RTGHPRFFNQLSTGLDIIGLAGEWLTSTANTNMFTYEIAPVFVLMEQITLKKMREIVGWS
SKDGDGIFSPGGAISNMYSIMAARYKYFPEVKTKGMAAIPKLVLFTSEHSHYSIKKAGAA
LGFGTDNVILIKCNERGKIIPADLEAKILEAKQKGYIPLYVNATAGTTVYGAFDPIQEIA
DICEKYNLWLHVDAAWGGGLLMSQKHRHKLSGIERANSVTWNPHKMMGVLLQCSAILVKE
KGILQGCNQMCAGYLFQPDKQYDVSYDTGDKAIQCGRHVDIFKFWLMWKAKGTVGFENQI
NKCLELAEYLYAKIKNREEFEMVFDGEPEHTNVCFWYIPQSLRGVLDSPERREKLHKVAP
KIKALMMESGTTMVGYQPQGDKANFFRMVVSNPAATQSDIDFLIEEIERLGQDL
NT seq 1785 nt NT seq  +upstreamnt  +downstreamnt
atggcgtcttcgaccccttcttcgtccgcaacctcctcgaacgcgggagcggaccccaat
actaccaacctgcgccccacaacgtatgacacctggtgcggcgtggcccatggatgcacc
agaaaactggggctgaagatctgtggcttcttgcaaaggaccaacagcctggaagagaag
agcaggcttgtgagcgccttcaaggagaggcagtcctccaagaatctgctttcctgtgaa
agcagcgacagggatggccgcttccagcgcacagagaccgacttctccaacctgtttgct
cgagatctgcttccggctaagaatggggaggagcaaactgtgcagttcctgctggaggtg
gtagacatactcctcaactacgtccgtaagacattcgatcgctccaccaaggtgctggac
ttccaccacccccaccagctgctggaaggcatggagggcttcaacctggaactctctgac
caccctgagtccctggagcagatcctggttgactgcagagacaccctgaaatatggcgtc
cgcacaggtcatcctcgatttttcaaccagctctccactggattggatatcattggttta
gctggcgaatggctgacatcaactgccaataccaatatgtttacatatgaaattgcacca
gtgtttgtcctcatggagcaaataacacttaagaagatgagagagatagttggatggtca
agtaaagatggtgatgggatattttctcctgggggagccatatccaacatgtacagcatc
atggcggctcgctataagtacttcccggaagttaagacaaagggcatggcggccataccc
aagctggtcctcttcacctcagaacacagtcactattccataaagaaagctggggctgca
cttggctttggaaccgacaatgtgattttgataaagtgcaatgaaagggggaagataatt
ccagctgatttagaggcaaaaattcttgaagccaagcaaaagggatacattcctctgtat
gtcaatgcaactgccggcacgactgtttatggtgcttttgatcccatacaggagattgca
gatatatgtgagaaatacaacctctggctgcatgttgatgctgcctggggtggcgggctg
ctcatgtctcagaagcaccgccataaactcagcggcatagaaagggccaactcagtcacc
tggaatcctcataagatgatgggcgtgctgttgcagtgctccgccatcctggtcaaggaa
aagggtatcctccaaggatgcaaccagatgtgtgcagggtacctcttccagccagacaag
cagtatgacgtctcctacgacactggggataaagccattcagtgtggccgccatgtggac
atcttcaagttctggctgatgtggaaagcaaagggcacagtgggctttgaaaatcagatc
aacaaatgcttggagctggcagaatacctctatgccaagattaaaaacagagaggaattt
gagatggtttttgatggtgagcctgagcacacgaatgtctgtttctggtatattccacaa
agcctcaggggcgttctggatagccctgagcgacgggaaaaactacacaaggtggccccg
aaaatcaaagccctgatgatggagtctggcacgaccatggttggctaccagcctcagggg
gacaaggccaacttcttccggatggtcgtctccaacccagccgctacccagtctgatatc
gacttcctcattgaggaaatagagaggctgggccaggatctgtaa

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