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Search for '28cortisol oh aldosterone 20 and subjected 3ametabolic' in 'all pathways' in 'all' returned 513558 results

SMP0645491

Pw685836 View Pathway
Metabolite

N-Oxide Electron Transfer

Veillonella dispar ATCC 17748

  • Matched Description: menaquinone oxidoreductase resulting in the release of a NADH and a hydrogen Ion, at the same time … in the inner membrane a menaquinone interacts with 2 electrons and 2 hydrogen ions thus releasing a … of 2 hydrogen ion and 2 electrons. At the same time trimethylamine N-oxide and 3 hydrogen ions … and a water molecule, this reaction happening in the periplasmic space. The second set of reactions … electrons being released into the inner membrane which then react with with 2 hydrogen ion and a

  • Metabolic

    SMP0309508

    Pw315165 View Pathway
    Metabolite

    Pyruvate Decarboxylation to Acetyl-CoA

    Bacteroides xylanisolvens XB1A

  • Matched Description: source of acetyl-CoA. Pyruvate dehydrogenase E1 and dihydrolipoyllysine-residue acetyltransferase … catalyzes pyruvic acid to acetyl-CoA and CO2. Acetyl-CoA is required for the TCA cycle. Lipoamide dehydrogenase reduces NAD+ to NADH.

  • Metabolic

    SMP0310097

    Pw315754 View Pathway
    Metabolite

    Pyruvate Decarboxylation to Acetyl-CoA

    Lautropia mirabilis ATCC 51599

  • Matched Description: source of acetyl-CoA. Pyruvate dehydrogenase E1 and dihydrolipoyllysine-residue acetyltransferase … catalyzes pyruvic acid to acetyl-CoA and CO2. Acetyl-CoA is required for the TCA cycle. Lipoamide dehydrogenase reduces NAD+ to NADH.

  • Metabolic

    SMP0310073

    Pw315730 View Pathway
    Metabolite

    Pyruvate Decarboxylation to Acetyl-CoA

    Fusobacterium varium ATCC 27725

  • Matched Description: source of acetyl-CoA. Pyruvate dehydrogenase E1 and dihydrolipoyllysine-residue acetyltransferase … catalyzes pyruvic acid to acetyl-CoA and CO2. Acetyl-CoA is required for the TCA cycle. Lipoamide dehydrogenase reduces NAD+ to NADH.

  • Metabolic

    SMP0310143

    Pw315800 View Pathway
    Metabolite

    Pyruvate Decarboxylation to Acetyl-CoA

    Campylobacter gracilis RM3268

  • Matched Description: source of acetyl-CoA. Pyruvate dehydrogenase E1 and dihydrolipoyllysine-residue acetyltransferase … catalyzes pyruvic acid to acetyl-CoA and CO2. Acetyl-CoA is required for the TCA cycle. Lipoamide dehydrogenase reduces NAD+ to NADH.

  • Metabolic

    SMP0310294

    Pw315951 View Pathway
    Metabolite

    Pyruvate Decarboxylation to Acetyl-CoA

    Acetomicrobium hydrogeniformans

  • Matched Description: source of acetyl-CoA. Pyruvate dehydrogenase E1 and dihydrolipoyllysine-residue acetyltransferase … catalyzes pyruvic acid to acetyl-CoA and CO2. Acetyl-CoA is required for the TCA cycle. Lipoamide dehydrogenase reduces NAD+ to NADH.

  • Metabolic

    SMP0347655

    Pw353420 View Pathway
    Metabolite

    Pyruvate Decarboxylation to Acetyl-CoA

    Escherichia coli E24377A

  • Matched Description: source of acetyl-CoA. Pyruvate dehydrogenase E1 and dihydrolipoyllysine-residue acetyltransferase … catalyzes pyruvic acid to acetyl-CoA and CO2. Acetyl-CoA is required for the TCA cycle. Lipoamide dehydrogenase reduces NAD+ to NADH.

  • Metabolic

    SMP0347653

    Pw353418 View Pathway
    Metabolite

    Pyruvate Decarboxylation to Acetyl-CoA

    Escherichia coli 536

  • Matched Description: source of acetyl-CoA. Pyruvate dehydrogenase E1 and dihydrolipoyllysine-residue acetyltransferase … catalyzes pyruvic acid to acetyl-CoA and CO2. Acetyl-CoA is required for the TCA cycle. Lipoamide dehydrogenase reduces NAD+ to NADH.

  • Metabolic

    SMP0347648

    Pw353413 View Pathway
    Metabolite

    Trehalose Degradation I (Low Osmolarity)

    Tatumella ptyseos ATCC 33301

  • Matched Description: In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low … phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.

  • Metabolic

    SMP0347497

    Pw353261 View Pathway
    Metabolite

    Trehalose Degradation I (Low Osmolarity)

    Fusobacterium varium ATCC 27725

  • Matched Description: In E.coli, trehalose can be only synthesized with high osmolarity, and if the osmolarity is low … phosphorylate free gluocose into glucose-6-phosphate and both glucose-6-phosphate moieties enter glycolysis.

  • Metabolic