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  2. Gelatinase - Wikipedia

    en.wikipedia.org/wiki/Gelatinase

    The substrate in this case is gelatin, and the products are the polypeptides formed. Gelatinase binds to the substrate, gelatin, due to specificity of binding interactions on cell surface. The catalysis, associated with a zinc ion and amino acid residues, breaks the peptide bonds into polypeptides through cleavage.

  3. Endoenzyme - Wikipedia

    en.wikipedia.org/wiki/Endoenzyme

    An endoenzyme, or intracellular enzyme, is an enzyme that functions within the cell in which it was produced. [1] Because the majority of enzymes fall within this category, the term is used primarily to differentiate a specific enzyme from an exoenzyme. It is possible for a single enzyme to have both endoenzymatic and exoenzymatic functions ...

  4. Gelatin - Wikipedia

    en.wikipedia.org/wiki/Gelatin

    Gelatin or gelatine (from Latin gelatus 'stiff, frozen') is a translucent, colorless, flavorless food ingredient, commonly derived from collagen taken from animal ...

  5. You really don't want to know what gelatin is made of - AOL

    www.aol.com/lifestyle/2017-06-19-you-really-dont...

    To some, these facts may be pretty fascinating, but for most of us, that's just plain gross.

  6. You really don't want to know what gelatin is made of - AOL

    www.aol.com/article/lifestyle/2017/06/19/you...

    Gelatin is a main ingredient. Candies like Snickers, Skittles, Starbursts, and marshmallows have also fallen victim to the gelatin trap (I know, I'm crying too).

  7. Exoenzyme - Wikipedia

    en.wikipedia.org/wiki/Exoenzyme

    Organelles of the secretory pathway involved in the secretion of exoenzymes. An exoenzyme, or extracellular enzyme, is an enzyme that is secreted by a cell and functions outside that cell.

  8. Is Jell-O good for you? Why gelatin is gaining attention as a ...

    www.aol.com/news/jell-o-good-why-gelatin...

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  9. Gelatin microparticle - Wikipedia

    en.wikipedia.org/wiki/Gelatin_microparticle

    Gelatin, along with its more familiar uses, is widely used for the production of microparticles due to its efficiency in forming gels as well as its biodegradability as a particle. Gelatin can be manipulated to form a stable matrix for biologically reactive compounds, allowing for the incorporation and protection against enzymatic degradation. [1]