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  2. Template:Metabolic pathways - Wikipedia

    en.wikipedia.org/wiki/Template:Metabolic_pathways

    This page is the template for the metabolic pathways template. This template should be used to illustrate the general 'shape' of metabolism within the cell. This template is part of the Metabolic Pathways task force. This template has been largely superseded by {{Metabolic metro}} but is kept as an archive

  3. Template:Glycolysis summary - Wikipedia

    en.wikipedia.org/wiki/Template:Glycolysis_summary

    Alternatively, for the non-interactive image, use [[File:Glycolysis metabolic pathway 3 annotated.svg]] Default alt text "A summary pathway diagram of glycolysis, showing the multistep conversion of glucose to pyruvate.

  4. Malate–aspartate shuttle - Wikipedia

    en.wikipedia.org/wiki/Malate–aspartate_shuttle

    Illustration of the malate–aspartate shuttle pathway. The malate–aspartate shuttle (sometimes simply the malate shuttle) is a biochemical system for translocating electrons produced during glycolysis across the semipermeable inner membrane of the mitochondrion for oxidative phosphorylation in eukaryotes.

  5. Entner–Doudoroff pathway - Wikipedia

    en.wikipedia.org/wiki/Entner–Doudoroff_pathway

    The Entner–Doudoroff pathway (ED Pathway) is a metabolic pathway that is most notable in Gram-negative bacteria, certain Gram-positive bacteria and archaea. [1] Glucose is the substrate in the ED pathway and through a series of enzyme assisted chemical reactions it is catabolized into pyruvate .

  6. Energy profile (chemistry) - Wikipedia

    en.wikipedia.org/wiki/Energy_profile_(chemistry)

    Figure 6:Reaction Coordinate Diagrams showing reactions with 0, 1 and 2 intermediates: The double-headed arrow shows the first, second and third step in each reaction coordinate diagram. In all three of these reactions the first step is the slow step because the activation energy from the reactants to the transition state is the highest.

  7. Purine metabolism - Wikipedia

    en.wikipedia.org/wiki/Purine_metabolism

    This ability reflects the essentiality of purines for life. The biochemical pathway of synthesis is very similar in eukaryotes and bacterial species, but is more variable among archaeal species. [8] A nearly complete, or complete, set of genes required for purine biosynthesis was determined to be present in 58 of the 65 archaeal species studied ...

  8. Purine nucleotide cycle - Wikipedia

    en.wikipedia.org/wiki/Purine_nucleotide_cycle

    Lowenstein first described this pathway and outlined its importance in processes including amino acid catabolism and regulation of flux through glycolysis and the Krebs cycle. [ 2 ] [ 3 ] [ 4 ] AMP is produced after strenuous muscle contraction when the ATP reservoir is low (ADP > ATP) by the adenylate kinase (myokinase) reaction.

  9. Glutamate–glutamine cycle - Wikipedia

    en.wikipedia.org/wiki/Glutamate–glutamine_cycle

    The glutamate/GABA–glutamine cycle is a metabolic pathway that describes the release of either glutamate or GABA from neurons which is then taken up into astrocytes (non-neuronal glial cells). In return, astrocytes release glutamine to be taken up into neurons for use as a precursor to the synthesis of either glutamate or GABA.