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Search for '28cortisol oh aldosterone 20 and subjected 3ametabolic' in 'all pathways' in 'all' returned 527780 results

SMP0360062

Pw365874 View Pathway
Metabolite

L-Lactaldehyde Degradation (Aerobic)

Acinetobacter johnsonii SH046

  • Matched Description: (S)-lactaldehyde is derived from degradation of L-fucose and rhamnose. (S)-lactaldehyde is … dehydrogenates lactic acid to pyruvic acid for the pathway of glycolysis and pyruvate dehydrogenase.

  • Metabolic

    SMP0360106

    Pw365918 View Pathway
    Metabolite

    L-Lactaldehyde Degradation (Aerobic)

    Phascolarctobacterium succinatutens YIT 12067

  • Matched Description: (S)-lactaldehyde is derived from degradation of L-fucose and rhamnose. (S)-lactaldehyde is … dehydrogenates lactic acid to pyruvic acid for the pathway of glycolysis and pyruvate dehydrogenase.

  • Metabolic

    SMP0360031

    Pw365843 View Pathway
    Metabolite

    L-Lactaldehyde Degradation (Aerobic)

    Trabulsiella guamensis ATCC 49490

  • Matched Description: (S)-lactaldehyde is derived from degradation of L-fucose and rhamnose. (S)-lactaldehyde is … dehydrogenates lactic acid to pyruvic acid for the pathway of glycolysis and pyruvate dehydrogenase.

  • Metabolic

    SMP0360101

    Pw365913 View Pathway
    Metabolite

    L-Lactaldehyde Degradation (Aerobic)

    Subdoligranulum variabile DSM 15176

  • Matched Description: (S)-lactaldehyde is derived from degradation of L-fucose and rhamnose. (S)-lactaldehyde is … dehydrogenates lactic acid to pyruvic acid for the pathway of glycolysis and pyruvate dehydrogenase.

  • Metabolic

    SMP0360012

    Pw365824 View Pathway
    Metabolite

    L-Lactaldehyde Degradation (Aerobic)

    Citrobacter amalonaticus Y19

  • Matched Description: (S)-lactaldehyde is derived from degradation of L-fucose and rhamnose. (S)-lactaldehyde is … dehydrogenates lactic acid to pyruvic acid for the pathway of glycolysis and pyruvate dehydrogenase.

  • Metabolic

    SMP0359993

    Pw365805 View Pathway
    Metabolite

    L-Lactaldehyde Degradation (Aerobic)

    Campylobacter showae CSUNSWCD

  • Matched Description: (S)-lactaldehyde is derived from degradation of L-fucose and rhamnose. (S)-lactaldehyde is … dehydrogenates lactic acid to pyruvic acid for the pathway of glycolysis and pyruvate dehydrogenase.

  • Metabolic

    SMP0360074

    Pw365886 View Pathway
    Metabolite

    L-Lactaldehyde Degradation (Aerobic)

    Grimontia hollisae CIP 101886

  • Matched Description: (S)-lactaldehyde is derived from degradation of L-fucose and rhamnose. (S)-lactaldehyde is … dehydrogenates lactic acid to pyruvic acid for the pathway of glycolysis and pyruvate dehydrogenase.

  • Metabolic

    SMP0360205

    Pw366017 View Pathway
    Metabolite

    L-Lactaldehyde Degradation (Aerobic)

    Escherichia coli O127:H6 str. E2348/69

  • Matched Description: (S)-lactaldehyde is derived from degradation of L-fucose and rhamnose. (S)-lactaldehyde is … dehydrogenates lactic acid to pyruvic acid for the pathway of glycolysis and pyruvate dehydrogenase.

  • Metabolic

    SMP0360219

    Pw366031 View Pathway
    Metabolite

    L-Lactaldehyde Degradation (Aerobic)

    Escherichia coli O55:H7 str. CB9615

  • Matched Description: (S)-lactaldehyde is derived from degradation of L-fucose and rhamnose. (S)-lactaldehyde is … dehydrogenates lactic acid to pyruvic acid for the pathway of glycolysis and pyruvate dehydrogenase.

  • Metabolic

    SMP0360200

    Pw366012 View Pathway
    Metabolite

    L-Lactaldehyde Degradation (Aerobic)

    Escherichia coli E24377A

  • Matched Description: (S)-lactaldehyde is derived from degradation of L-fucose and rhamnose. (S)-lactaldehyde is … dehydrogenates lactic acid to pyruvic acid for the pathway of glycolysis and pyruvate dehydrogenase.

  • Metabolic