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  2. Glutamic acid - Wikipedia

    en.wikipedia.org/wiki/Glutamic_acid

    Glutamic acid is produced on the largest scale of any amino acid, with an estimated annual production of about 1.5 million tons in 2006. [18] Chemical synthesis was supplanted by the aerobic fermentation of sugars and ammonia in the 1950s, with the organism Corynebacterium glutamicum (also known as Brevibacterium flavum ) being the most widely ...

  3. Glutamate–glutamine cycle - Wikipedia

    en.wikipedia.org/wiki/Glutamate–glutamine_cycle

    In biochemistry, the glutamate–glutamine cycle is a cyclic metabolic pathway which maintains an adequate supply of the neurotransmitter glutamate in the central nervous system. [1] Neurons are unable to synthesize either the excitatory neurotransmitter glutamate , or the inhibitory GABA from glucose .

  4. Glutaminolysis - Wikipedia

    en.wikipedia.org/wiki/Glutaminolysis

    Due to the truncation of the citric acid cycle the amount of acetyl-CoA infiltrated in the citric acid cycle is low and acetyl-CoA is available for de novo synthesis of fatty acids and cholesterol. The fatty acids can be used for phospholipid synthesis or can be released. [15] Fatty acids represent an effective storage vehicle for hydrogen.

  5. Amino acid synthesis - Wikipedia

    en.wikipedia.org/wiki/Amino_acid_synthesis

    Most amino acids are synthesized from α-ketoacids, and later transaminated from another amino acid, usually glutamate. The enzyme involved in this reaction is an aminotransferase. α-ketoacid + glutamate ⇄ amino acid + α-ketoglutarate. Glutamate itself is formed by amination of α-ketoglutarate: α-ketoglutarate + NH + 4 ⇄ glutamate

  6. Glutamine - Wikipedia

    en.wikipedia.org/wiki/Glutamine

    Regulation of acid-base balance in the kidney by producing ammonium [9] Cellular energy, as a source, next to glucose [10] Nitrogen donation for many anabolic processes, including the synthesis of purines [7] Carbon donation, as a source, refilling the citric acid cycle [11] Nontoxic transporter of ammonia in the blood circulation. [12] [13]

  7. Glycolysis - Wikipedia

    en.wikipedia.org/wiki/Glycolysis

    d -Glucose + 2 [NAD] + + 2 [ADP] + 2 [P] i 2 × Pyruvate 2 × + 2 [NADH] + 2 H + + 2 [ATP] + 2 H 2 O Glycolysis pathway overview The use of symbols in this equation makes it appear unbalanced with respect to oxygen atoms, hydrogen atoms, and charges. Atom balance is maintained by the two phosphate (P i) groups: Each exists in the form of a hydrogen phosphate anion, dissociating to contribute ...

  8. Transaminase - Wikipedia

    en.wikipedia.org/wiki/Transaminase

    The specific enzymes are named from one of the reactant pairs, for example; the reaction between glutamic acid and pyruvic acid to make alpha ketoglutaric acid and alanine is called alanine transaminase and was originally called glutamic-pyruvic transaminase or GPT for short. [1]

  9. γ-L-Glutamyl-L-cysteine - Wikipedia

    en.wikipedia.org/wiki/Γ-L-Glutamyl-L-cysteine

    γ-L-Glutamyl-L-cysteine, also known as γ-glutamylcysteine (GGC), is a dipeptide found in animals, plants, fungi, some bacteria, and archaea.It has a relatively unusual γ-bond between the constituent amino acids, L-glutamic acid and L-cysteine and is a key intermediate in the γ-glutamyl cycle first described by Meister in the 1970s.

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