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Search for '28cortisol oh aldosterone 20 and subjected 3ametabolic' in 'all pathways' in 'all' returned 527039 results

SMP0515419

Pw542723 View Pathway
Metabolite

Benzoate degradation I

Campylobacter showae CSUNSWCD

  • Matched Description: yield energy and carbon. While the precise transport mechanisms remain under research, it is proposed … such as permeases and porins. Benzoate is then converted to benzoyl-CoA by benzoate-CoA ligase

  • Metabolic

    SMP0515829

    Pw543239 View Pathway
    Metabolite

    Benzoate degradation I

    Grimontia hollisae CIP 101886

  • Matched Description: yield energy and carbon. While the precise transport mechanisms remain under research, it is proposed … such as permeases and porins. Benzoate is then converted to benzoyl-CoA by benzoate-CoA ligase

  • Metabolic

    SMP0525727

    Pw553916 View Pathway
    Metabolite

    Benzoate degradation I

    Vibrio cholerae

  • Matched Description: yield energy and carbon. While the precise transport mechanisms remain under research, it is proposed … such as permeases and porins. Benzoate is then converted to benzoyl-CoA by benzoate-CoA ligase

  • Metabolic

    SMP0525720

    Pw553909 View Pathway
    Metabolite

    Benzoate degradation I

    Methylococcus capsulatus

  • Matched Description: yield energy and carbon. While the precise transport mechanisms remain under research, it is proposed … such as permeases and porins. Benzoate is then converted to benzoyl-CoA by benzoate-CoA ligase

  • Metabolic

    SMP0525354

    Pw553492 View Pathway
    Metabolite

    Benzoate degradation I

    Escherichia coli (strain K12 / MC4100 / BW2952)

  • Matched Description: yield energy and carbon. While the precise transport mechanisms remain under research, it is proposed … such as permeases and porins. Benzoate is then converted to benzoyl-CoA by benzoate-CoA ligase

  • Metabolic

    SMP0525346

    Pw553478 View Pathway
    Metabolite

    Benzoate degradation I

    Escherichia coli (strain 55989 / EAEC)

  • Matched Description: yield energy and carbon. While the precise transport mechanisms remain under research, it is proposed … such as permeases and porins. Benzoate is then converted to benzoyl-CoA by benzoate-CoA ligase

  • Metabolic

    SMP0515773

    Missing View Pathway
    Metabolite

    Benzoate degradation I

    Acinetobacter junii SH205

  • Matched Description: yield energy and carbon. While the precise transport mechanisms remain under research, it is proposed … such as permeases and porins. Benzoate is then converted to benzoyl-CoA by benzoate-CoA ligase

  • Metabolic

    SMP0646405

    Pw686750 View Pathway
    Metabolite

    Benzoate degradation I

    Acinetobacter haemolyticus NIPH 261

  • Matched Description: yield energy and carbon. While the precise transport mechanisms remain under research, it is proposed … such as permeases and porins. Benzoate is then converted to benzoyl-CoA by benzoate-CoA ligase

  • Metabolic

    SMP0383069

    Pw391222 View Pathway
    Metabolite

    Proline Metabolism

    Bacteroides sp. 2_1_33B

  • Matched Description: , an NADP and a L-glutamic gamma-semialdehyde. L-glutamic gamma-semialdehyde is dehydrated … spontaneously, resulting in a release of water,hydrogen ion and 1-Pyrroline-5-carboxylic acid. The latter … -proline. L-proline works as a repressor of the pyrroline-5-carboxylate reductase enzyme and glutamate 5 … -kinase. Three genetic loci, proA, proB and proC control the biosynthesis of L-proline in E … the antagonistic nucleophilic and aqueous environment found in the cell. Finally, NADPH-dependent

  • Metabolic

    SMP0632109

    Pw672139 View Pathway
    Metabolite

    Proline Metabolism

    Pseudomonas aeruginosa

  • Matched Description: , an NADP and a L-glutamic gamma-semialdehyde. L-glutamic gamma-semialdehyde is dehydrated … spontaneously, resulting in a release of water,hydrogen ion and 1-Pyrroline-5-carboxylic acid. The latter … -proline. L-proline works as a repressor of the pyrroline-5-carboxylate reductase enzyme and glutamate 5 … -kinase. Three genetic loci, proA, proB and proC control the biosynthesis of L-proline in E … the antagonistic nucleophilic and aqueous environment found in the cell. Finally, NADPH-dependent

  • Metabolic