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  2. Shikimate kinase - Wikipedia

    en.wikipedia.org/wiki/Shikimate_kinase

    Shikimate kinase (EC 2.7.1.71) is an enzyme that catalyzes the ATP-dependent phosphorylation of shikimate to form shikimate 3-phosphate. [1] This reaction is the fifth step of the shikimate pathway, [ 2 ] which is used by plants and bacteria to synthesize the common precursor of aromatic amino acids and secondary metabolites.

  3. DAHP synthase - Wikipedia

    en.wikipedia.org/wiki/DAHP_synthase

    3-Deoxy-D-arabinoheptulosonate 7-phosphate (DAHP) synthase (EC 2.5.1.54) is the first enzyme in a series of metabolic reactions known as the shikimate pathway, which is responsible for the biosynthesis of the amino acids phenylalanine, tyrosine, and tryptophan. Since it is the first enzyme in the shikimate pathway, it controls the amount of ...

  4. Shikimate pathway - Wikipedia

    en.wikipedia.org/wiki/Shikimate_pathway

    The shikimate pathway (shikimic acid pathway) is a seven-step metabolic pathway used by bacteria, archaea, fungi, algae, some protozoans, and plants for the biosynthesis of folates and aromatic amino acids (tryptophan, phenylalanine, and tyrosine). This pathway is not found in mammals.

  5. 3-dehydroquinate dehydratase - Wikipedia

    en.wikipedia.org/wiki/3-dehydroquinate_dehydratase

    3-Dehydroquinate Dehydratase is an enzyme that catalyzes the third step of the shikimate pathway. The shikimate pathway is a biosynthetic pathway that allows plants, fungi, and bacteria to produce aromatic amino acids. [2] Mammals do not have this pathway, meaning that they must obtain these essential amino acids through their diet.

  6. 3-dehydroquinate synthase - Wikipedia

    en.wikipedia.org/wiki/3-dehydroquinate_synthase

    The shikimate pathway is composed of seven steps, each catalyzed by an enzyme. The shikimate pathway is responsible for producing the precursors for aromatic amino acids, which are essential to our diets because we cannot synthesize them in our bodies. Only plants, bacteria, and microbial eukaryotes are capable of producing aromatic amino acids.

  7. Behavioral endocrinology - Wikipedia

    en.wikipedia.org/wiki/Behavioral_endocrinology

    Behavioral endocrinology is a branch of endocrinology that studies the Neuroendocrine system and its effects on behavior. [1] Behavioral endocrinology studies the biological mechanisms that produce behaviors, this gives insight into the evolutionary past. [2] The field has roots in ethology, endocrinology and psychology. [3]

  8. Evolutionary developmental psychology - Wikipedia

    en.wikipedia.org/wiki/Evolutionary_developmental...

    Mainstream evolutionary psychology grew out of earlier movements which applied the principles of evolutionary biology to understand the mind and behavior such as sociobiology, ethology, and behavioral ecology, [5] differing from these earlier approaches by focusing on identifying psychological adaptations rather than adaptive behavior. [20]

  9. Inhibitory control - Wikipedia

    en.wikipedia.org/wiki/Inhibitory_control

    Inhibitory control, also known as response inhibition, is a cognitive process – and, more specifically, an executive function – that permits an individual to inhibit their impulses and natural, habitual, or dominant behavioral responses to stimuli (a.k.a. prepotent responses) in order to select a more appropriate behavior that is consistent with completing their goals.