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  2. Collagen - Wikipedia

    en.wikipedia.org/wiki/Collagen

    Collagen (/ ˈ k ɒ l ə dʒ ə n /) is the main structural protein in the extracellular matrix of a body's various connective tissues. As the main component of connective tissue, it is the most abundant protein in mammals. [1] 25% to 35% of a mammalian body's protein content is collagen.

  3. Biopolymer - Wikipedia

    en.wikipedia.org/wiki/Biopolymer

    Gelatin: Gelatin is obtained from type I collagen consisting of cysteine, and produced by the partial hydrolysis of collagen from bones, tissues and skin of animals. [6] There are two types of gelatin, Type A and Type B. Type A collagen is derived by acid hydrolysis of collagen and has 18.5% nitrogen.

  4. Mucilage - Wikipedia

    en.wikipedia.org/wiki/Mucilage

    A sundew with a leaf bent around a fly trapped by mucilage. Mucilage is a thick gluey substance produced by nearly all plants and some microorganisms.These microorganisms include protists which use it for their locomotion, with the direction of their movement always opposite to that of the secretion of mucilage. [1]

  5. Extracellular matrix - Wikipedia

    en.wikipedia.org/wiki/Extracellular_matrix

    Collagen is the most abundant protein in the ECM, and is the most abundant protein in the human body. [ 17 ] [ 18 ] It accounts for 90% of bone matrix protein content. [ 19 ] Collagens are present in the ECM as fibrillar proteins and give structural support to resident cells.

  6. Collagenase - Wikipedia

    en.wikipedia.org/wiki/Collagenase

    Collagen, a key component of the animal extracellular matrix, is made through cleavage of pro-collagen by collagenase once it has been secreted from the cell. This stops large structures from forming inside the cell itself. In addition to being produced by some bacteria, collagenase can be made by the body as part of its normal immune response.

  7. Hydroxyproline - Wikipedia

    en.wikipedia.org/wiki/Hydroxyproline

    Hydroxyproline is a major component of the protein collagen, [3] comprising roughly 13.5% of mammalian collagen. Hydroxyproline and proline play key roles for collagen stability. [4] They permit the sharp twisting of the collagen helix. [5]

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  9. Type I collagen - Wikipedia

    en.wikipedia.org/wiki/Type_I_collagen

    Chemical Structure of Type I Collagen. Type I collagen has a triple-helical form which is caused by its amino acid composition. Its specific domain follows an order of G-X-Y In which the X and Y slots are occupied by any amino acid other than glycine however these slots are typically occupied by both hydroxyproline and proline, not in any particular order. [5]