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1D-myo-inositol hexakisphosphate biosynthesis I (from Ins(1,4,5)P3)
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PWY-6361
1D-myo-inositol hexakisphosphate biosynthesis V (from Ins(1,3,4)P3)
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PWY-6554
2-arachidonoylglycerol biosynthesis
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PWY-8052
ammonia oxidation II (anaerobic)
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P303-PWY
Biosynthesis of secondary metabolites
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Cyanoamino acid metabolism
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D-myo-inositol (1,4,5,6)-tetrakisphosphate biosynthesis
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PWY-6366
diethylphosphate degradation
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PWY-5491
dTMP de novo biosynthesis (mitochondrial)
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PWY66-385
Ether lipid metabolism
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folate transformations II (plants)
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PWY-3841
folate transformations III (E. coli)
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1CMET2-PWY
gamma-glutamyl cycle
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PWY-4041
Glutathione metabolism
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glutathione metabolism
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Glycerolipid metabolism
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Glycerophospholipid metabolism
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Glycosaminoglycan degradation
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Glycosphingolipid biosynthesis - ganglio series
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hypoglycin biosynthesis
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PWY-5826
Inositol phosphate metabolism
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leukotriene biosynthesis
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PWY66-375
metabolism of disaccharids
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Microbial metabolism in diverse environments
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mRNA capping I
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PWY-7375
nitrate reduction I (denitrification)
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DENITRIFICATION-PWY
nitrate reduction VII (denitrification)
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PWY-6748
nitrifier denitrification
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PWY-7084
nitrite-dependent anaerobic methane oxidation
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PWY-6523
nocardicin A biosynthesis
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PWY-7797
One carbon pool by folate
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Other glycan degradation
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Penicillin and cephalosporin biosynthesis
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peptido-conjugates in tissue regeneration biosynthesis
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PWY-8355
phosphate acquisition
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PWY-6348
phospholipases
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LIPASYN-PWY
plasmalogen biosynthesis I (aerobic)
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PWY-7782
plasmalogen degradation
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PWY-7783
retinol biosynthesis
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PWY-6857
Riboflavin metabolism
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Sphingolipid metabolism
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sulfopterin metabolism
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Taurine and hypotaurine metabolism
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tetrahydrofolate biosynthesis I
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PWY-6614
tetrahydrofolate metabolism
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triacylglycerol degradation
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LIPAS-PWY
tRNA processing
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PWY0-1479
vitamin B1 metabolism
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xyloglucan degradation II (exoglucanase)
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PWY-6807
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brenda
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SwissProt
brenda
chymotrypsin-like serine protease
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brenda
gene mprBi
UniProt
brenda
increased accumulation of recombinant enzyme by growth in presence of casein or gelatin. During stationary growth phase, enzyme production is stimulated by Ca2+, Mn2+, and Co2+, and inhibited by Zn2+, Fe2+, and Cu2+
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brenda
increased accumulation of recombinant enzyme during stationary growth phase by growth in presence of phosphate or ammonium ions, and in presence of gelatin or casein. During sporulation, enzyme production is stimulated by Ca2+, Mn2+, and Co2+, and inhibited by Zn2+, Fe2+, and Cu2+. Glucose is not inhibitory to enzyme production during stationary growth
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brenda
strain 3-19
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brenda
strain 3-19, glutamyl endopaptidase 2
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brenda
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