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  2. Substrate (biology) - Wikipedia

    en.wikipedia.org/wiki/Substrate_(biology)

    In biology, a substrate is the surface on which an organism (such as a plant, fungus, or animal) lives.A substrate can include biotic or abiotic materials and animals. For example, encrusting algae that lives on a rock (its substrate) can be itself a substrate for an animal that lives on top of the algae.

  3. Substrate - Wikipedia

    en.wikipedia.org/wiki/Substrate

    Substrate (biology), the natural environment in which an organism lives, or the surface or medium on which an organism grows or is attached Substrate (aquatic environment) , the earthy material that exists in the bottom of an aquatic habitat, like dirt, rocks, sand, or gravel

  4. Substrate (chemistry) - Wikipedia

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

    Similarly, a substrate is called 'fluorogenic' if it gives rise to a fluorescent product when acted on by an enzyme. [citation needed] For example, curd formation (rennet coagulation) is a reaction that occurs upon adding the enzyme rennin to milk. In this reaction, the substrate is a milk protein (e.g., casein) and the enzyme is rennin. The ...

  5. Substrate presentation - Wikipedia

    en.wikipedia.org/wiki/Substrate_presentation

    Substrate presentation; A substrate (purple rectangle) is shown sequestered into a lipid domain (green lipids). The substrate's translocation to the disordered region (grey lipids) presents it to its enzyme (blue oval) where it is hydrolyzed. In molecular biology, substrate presentation is a biological process that activates a protein.

  6. Substrate (aquatic environment) - Wikipedia

    en.wikipedia.org/wiki/Substrate_(aquatic...

    Substrate is the earthy material that forms or collects at the bottom of an aquatic habitat. It is made of sediments that may consist of: Silt – A loose, granular material with mineral particles 0.5 mm or less in diameter.

  7. Biological process - Wikipedia

    en.wikipedia.org/wiki/Biological_process

    Biological processes are regulated by many means; examples include the control of gene expression, protein modification or interaction with a protein or substrate molecule. Homeostasis: regulation of the internal environment to maintain a constant state; for example, sweating to reduce temperature

  8. Hydrolase - Wikipedia

    en.wikipedia.org/wiki/Hydrolase

    An example of crucial esterase is acetylcholine esterase, which assists in transforming the neuron impulse into the acetate group after the hydrolase breaks the acetylcholine into choline and acetic acid. [1] Acetic acid is an important metabolite in the body and a critical intermediate for other reactions such as glycolysis.

  9. Enzyme activator - Wikipedia

    en.wikipedia.org/wiki/Enzyme_activator

    Glucokinase (GK) is an enzyme that helps in the glycolytic pathway by phosphorylating glucose into glucose-6-phosphate (G6P). It is an isozyme of hexokinase and is found mainly in pancreatic β cells, but also liver, gut, and brain cells where glycolysis cause glucose-induced insulin secretion. [2]