SMP0412571
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Mannose Metabolism
Escherichia coli str. K-12 substr. DH10B
Matched Description: Escherichia coli can utilize D-mannose for its sole carbon and energy source. Alpha-D-mannose is … isomerase. D-fructose-6-phosphate is an intermediate of glycolysis and can enter the pathways of … phosphorylated aldohexoses (β-D-glucose-6-phosphate, D-mannose-6-phosphate) and phosphorylated ketohexoses (D … phosphomannomutase and mannose-1-phosphate guanylyltransferase. GDP-D-mannose produces GDP-L-fucose beginning … epimerase and reductase of GDP-4-dehydro-6-deoxy-D-mannose. L-fucose then enters the colanic acid building blocks biosynthesis pathway.
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SMP0412845
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Mannose Metabolism
Escherichia coli O26:H11 str. 11368
Matched Description: Escherichia coli can utilize D-mannose for its sole carbon and energy source. Alpha-D-mannose is … isomerase. D-fructose-6-phosphate is an intermediate of glycolysis and can enter the pathways of … phosphorylated aldohexoses (β-D-glucose-6-phosphate, D-mannose-6-phosphate) and phosphorylated ketohexoses (D … phosphomannomutase and mannose-1-phosphate guanylyltransferase. GDP-D-mannose produces GDP-L-fucose beginning … epimerase and reductase of GDP-4-dehydro-6-deoxy-D-mannose. L-fucose then enters the colanic acid building blocks biosynthesis pathway.
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SMP0410397
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Mannose Metabolism
Escherichia coli (strain ATCC 8739 / DSM 1576 / Crooks)
Matched Description: Escherichia coli can utilize D-mannose for its sole carbon and energy source. Alpha-D-mannose is … isomerase. D-fructose-6-phosphate is an intermediate of glycolysis and can enter the pathways of … phosphorylated aldohexoses (β-D-glucose-6-phosphate, D-mannose-6-phosphate) and phosphorylated ketohexoses (D … phosphomannomutase and mannose-1-phosphate guanylyltransferase. GDP-D-mannose produces GDP-L-fucose beginning … epimerase and reductase of GDP-4-dehydro-6-deoxy-D-mannose. L-fucose then enters the colanic acid building blocks biosynthesis pathway.
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SMP0412462
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Mannose Metabolism
Escherichia coli O157:H7 str. Sakai
Matched Description: Escherichia coli can utilize D-mannose for its sole carbon and energy source. Alpha-D-mannose is … isomerase. D-fructose-6-phosphate is an intermediate of glycolysis and can enter the pathways of … phosphorylated aldohexoses (β-D-glucose-6-phosphate, D-mannose-6-phosphate) and phosphorylated ketohexoses (D … phosphomannomutase and mannose-1-phosphate guanylyltransferase. GDP-D-mannose produces GDP-L-fucose beginning … epimerase and reductase of GDP-4-dehydro-6-deoxy-D-mannose. L-fucose then enters the colanic acid building blocks biosynthesis pathway.
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SMP0413612
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Mannose Metabolism
Escherichia coli DH1
Matched Description: Escherichia coli can utilize D-mannose for its sole carbon and energy source. Alpha-D-mannose is … isomerase. D-fructose-6-phosphate is an intermediate of glycolysis and can enter the pathways of … phosphorylated aldohexoses (β-D-glucose-6-phosphate, D-mannose-6-phosphate) and phosphorylated ketohexoses (D … phosphomannomutase and mannose-1-phosphate guanylyltransferase. GDP-D-mannose produces GDP-L-fucose beginning … epimerase and reductase of GDP-4-dehydro-6-deoxy-D-mannose. L-fucose then enters the colanic acid building blocks biosynthesis pathway.
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SMP0645512
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Uracil Degradation III
Bacteroides stercoris ATCC 43183
Matched Description: Uracil is a pyrimidine nucleobase found in RNA, and can be used as a source of nitrogen for E. coli … broken down into both carbamic acid and 3-aminoacrylate following the addition of a water molecule by the … addition of a hydrogen ion, split into an ammonium ion and a molecule of carbon dioxide. 3-aminoacrylate … compound enters into a reaction catalyzed by protein rutD, which adds a water molecule and hydrogen ion … and forms malonic semialdehyde with ammonium being a byproduct. Finally, the putative NADH
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SMP0645568
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Uracil Degradation III
Prevotella bivia DSM 20514
Matched Description: Uracil is a pyrimidine nucleobase found in RNA, and can be used as a source of nitrogen for E. coli … broken down into both carbamic acid and 3-aminoacrylate following the addition of a water molecule by the … addition of a hydrogen ion, split into an ammonium ion and a molecule of carbon dioxide. 3-aminoacrylate … compound enters into a reaction catalyzed by protein rutD, which adds a water molecule and hydrogen ion … and forms malonic semialdehyde with ammonium being a byproduct. Finally, the putative NADH
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SMP0645611
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Uracil Degradation III
Helicobacter pullorum MIT 98-5489
Matched Description: Uracil is a pyrimidine nucleobase found in RNA, and can be used as a source of nitrogen for E. coli … broken down into both carbamic acid and 3-aminoacrylate following the addition of a water molecule by the … addition of a hydrogen ion, split into an ammonium ion and a molecule of carbon dioxide. 3-aminoacrylate … compound enters into a reaction catalyzed by protein rutD, which adds a water molecule and hydrogen ion … and forms malonic semialdehyde with ammonium being a byproduct. Finally, the putative NADH
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SMP0645678
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Uracil Degradation III
Brachyspira pilosicoli B2904
Matched Description: Uracil is a pyrimidine nucleobase found in RNA, and can be used as a source of nitrogen for E. coli … broken down into both carbamic acid and 3-aminoacrylate following the addition of a water molecule by the … addition of a hydrogen ion, split into an ammonium ion and a molecule of carbon dioxide. 3-aminoacrylate … compound enters into a reaction catalyzed by protein rutD, which adds a water molecule and hydrogen ion … and forms malonic semialdehyde with ammonium being a byproduct. Finally, the putative NADH
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SMP0468905
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Uracil Degradation III
Escherichia coli (strain ATCC 8739 / DSM 1576 / Crooks)
Matched Description: Uracil is a pyrimidine nucleobase found in RNA, and can be used as a source of nitrogen for E. coli … broken down into both carbamic acid and 3-aminoacrylate following the addition of a water molecule by the … addition of a hydrogen ion, split into an ammonium ion and a molecule of carbon dioxide. 3-aminoacrylate … compound enters into a reaction catalyzed by protein rutD, which adds a water molecule and hydrogen ion … and forms malonic semialdehyde with ammonium being a byproduct. Finally, the putative NADH
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