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  • gene symbol (e.g. TP53)
  • gene name (e.g. tumor protein p53)
  • gene synonyms (e.g. FLJ92943)
  • Ensembl ID (e.g. ENSG0000141510)
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Homo sapiens (human)

hypusine biosynthesis superpathway of L-serine and glycine biosynthesis I
L-alanine biosynthesis II L-alanine biosynthesis III
L-ornithine de novo biosynthesis L-aspartate biosynthesis
L-glutamate biosynthesis II taurine biosynthesis
protein citrullination L-proline biosynthesis I
L-tyrosine biosynthesis IV glycogen biosynthesis II (from UDP-D-Glucose)
UDP-N-acetyl-D-galactosamine biosynthesis I all-trans-decaprenyl diphosphate biosynthesis
superpathway of heme biosynthesis from glycine ubiquinol-10 biosynthesis (eukaryotic)
glutathione redox reactions II glutathione redox reactions I
tetrahydrobiopterin biosynthesis II tetrapyrrole biosynthesis II (from glycine)
vitamin D3 biosynthesis pyridoxal 5'-phosphate salvage I
serotonin and melatonin biosynthesis catecholamine biosynthesis
ceramide de novo biosynthesis gamma-linolenate biosynthesis II (animals)
oleate biosynthesis II (animals and fungi) stearate biosynthesis I (animals and fungi)
phosphatidylethanolamine biosynthesis III cholesterol biosynthesis II (via 24,25-dihydrolanosterol)
cholesterol biosynthesis I cholesterol biosynthesis III (via desmosterol)
superpathway of cholesterol biosynthesis creatine-phosphate biosynthesis
PRPP biosynthesis I urate biosynthesis/inosine 5'-phosphate degradation
histamine biosynthesis choline degradation I
putrescine biosynthesis I (S)-reticuline biosynthesis II
D-myo-inositol (3,4,5,6)-tetrakisphosphate biosynthesis D-myo-inositol (1,4,5,6)-tetrakisphosphate biosynthesis
1D-myo-inositol hexakisphosphate biosynthesis II (mammalian) oxidative ethanol degradation III
ethanol degradation IV ethanol degradation II
methylglyoxal degradation VI methylglyoxal degradation III
dopamine degradation putrescine degradation III
2-oxoisovalerate decarboxylation to isobutanoyl-CoA 2-oxoglutarate decarboxylation to succinyl-CoA
trans-4-hydroxy-L-proline degradation I L-alanine degradation III
GABA shunt L-glutamate degradation X
L-histidine degradation VI L-histidine degradation III
L-leucine degradation I L-phenylalanine degradation I (aerobic)
L-serine degradation L-tryptophan degradation XI (mammalian, via kynurenine)
2-amino-3-carboxymuconate semialdehyde degradation to glutaryl-CoA pyruvate decarboxylation to acetyl CoA
propanoyl CoA degradation I heme degradation
anandamide degradation fatty acid beta-oxidation I
thyroid hormone metabolism II (via conjugation and/or degradation) urea cycle
sulfite oxidation IV pyrimidine ribonucleosides degradation
purine ribonucleosides degradation bupropion degradation
nicotine degradation IV nicotine degradation V
arsenate detoxification I (glutaredoxin) homolactic fermentation
pentose phosphate pathway (oxidative branch) serine and glycine biosynthesis
ornithine de novo biosynthesis asparagine biosynthesis
aspartate biosynthesis cysteine biosynthesis/homocysteine degradation (trans-sulfuration)
glutamate biosynthesis/degradation glutamine biosynthesis
glycine biosynthesis glycine/serine biosynthesis
methionine salvage S-methyl-5-thio-alpha-D-ribose 1-phosphate degradation
protein citrullination serine biosynthesis (phosphorylated route)
UDP-D-xylose and UDP-D-glucuronate biosynthesis GDP-L-fucose biosynthesis II (from L-fucose)
GDP-L-fucose biosynthesis I (from GDP-D-mannose) GDP-mannose biosynthesis
dolichyl-diphosphooligosaccharide biosynthesis glycogen biosynthesis
UDP-N-acetyl-D-galactosamine biosynthesis II mevalonate pathway
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