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Search for '28cortisol oh aldosterone 20 and subjected 3ametabolic' in 'all pathways' in 'all' returned 293138 results

SMP0390389

Missing View Pathway
Metabolite

Cysteine Biosynthesis

Escherichia coli (strain B / REL606)

  • Matched Description: The pathway of cysteine biosynthesis is a two-step conversion starting from L-serine and yielding L … to produce L-cysteine and acetic acid. Hydrogen sulfide is produced from a sulfate. Sulfate reacts … serine acetyltransferase and it is the only cysteine synthase that is required for cell viability

  • Metabolic

    SMP0397976

    Missing View Pathway
    Metabolite

    Cysteine Biosynthesis

    Escherichia coli HS

  • Matched Description: The pathway of cysteine biosynthesis is a two-step conversion starting from L-serine and yielding L … to produce L-cysteine and acetic acid. Hydrogen sulfide is produced from a sulfate. Sulfate reacts … serine acetyltransferase and it is the only cysteine synthase that is required for cell viability

  • Metabolic

    SMP0391293

    Missing View Pathway
    Metabolite

    Cysteine Biosynthesis

    Bacteroides oleiciplenus YIT 12058

  • Matched Description: The pathway of cysteine biosynthesis is a two-step conversion starting from L-serine and yielding L … to produce L-cysteine and acetic acid. Hydrogen sulfide is produced from a sulfate. Sulfate reacts … serine acetyltransferase and it is the only cysteine synthase that is required for cell viability

  • Metabolic

    SMP0398065

    Missing View Pathway
    Metabolite

    Cysteine Biosynthesis

    Escherichia coli ED1a

  • Matched Description: The pathway of cysteine biosynthesis is a two-step conversion starting from L-serine and yielding L … to produce L-cysteine and acetic acid. Hydrogen sulfide is produced from a sulfate. Sulfate reacts … serine acetyltransferase and it is the only cysteine synthase that is required for cell viability

  • Metabolic

    SMP0397991

    Missing View Pathway
    Metabolite

    Cysteine Biosynthesis

    Escherichia coli str. K-12 substr. DH10B

  • Matched Description: The pathway of cysteine biosynthesis is a two-step conversion starting from L-serine and yielding L … to produce L-cysteine and acetic acid. Hydrogen sulfide is produced from a sulfate. Sulfate reacts … serine acetyltransferase and it is the only cysteine synthase that is required for cell viability

  • Metabolic

    SMP0391274

    Missing View Pathway
    Metabolite

    Cysteine Biosynthesis

    Bacteroides fluxus YIT 12057

  • Matched Description: The pathway of cysteine biosynthesis is a two-step conversion starting from L-serine and yielding L … to produce L-cysteine and acetic acid. Hydrogen sulfide is produced from a sulfate. Sulfate reacts … serine acetyltransferase and it is the only cysteine synthase that is required for cell viability

  • Metabolic

    SMP0388107

    Missing View Pathway
    Metabolite

    TCA Cycle

    Pseudomonas tructae

  • Matched Description: of glycogen (a stored form of glucose), fats, and many amino acids. At beginning, acetyl-CoA first … called alpha-ketoglutarate) and then a second carboxyl group (leading to the 4-carbon compound called … succinate). Succinate molecule is further oxidized to fumarate, then malate and finally

  • Metabolic

    SMP0364019

    Missing View Pathway
    Metabolite

    2,3-Dihydroxybenzoate Biosynthesis

    Bacteroides stercoris ATCC 43183

  • Matched Description: iron molecules and allow them to be taken up and used by the bacteria in cases of iron scarcity. An … , which then removes a pyruvic acid molecule as a byproduct, and forms (2S, 3S)-2,3-dihydroxy-2,3

  • Metabolic

    SMP0365570

    Missing View Pathway
    Metabolite

    2,3-Dihydroxybenzoate Biosynthesis

    Escherichia coli O103:H2 str. 12009

  • Matched Description: iron molecules and allow them to be taken up and used by the bacteria in cases of iron scarcity. An … , which then removes a pyruvic acid molecule as a byproduct, and forms (2S, 3S)-2,3-dihydroxy-2,3

  • Metabolic

    SMP0365565

    Missing View Pathway
    Metabolite

    2,3-Dihydroxybenzoate Biosynthesis

    Escherichia coli S88

  • Matched Description: iron molecules and allow them to be taken up and used by the bacteria in cases of iron scarcity. An … , which then removes a pyruvic acid molecule as a byproduct, and forms (2S, 3S)-2,3-dihydroxy-2,3

  • Metabolic