Sandbox Reserved 1125: Difference between revisions

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To express collagenolytic activity, they have to retain both the catalytic and hemopexin domains.
To express collagenolytic activity, they have to retain both the catalytic and hemopexin domains.
It is not clear how the hemopexin domain help to cleave triple-helical collagens because the isolated hemopexin domains of MMP-8 does not bind to collagen.<ref>PMID:8489511</ref>
It is not clear how the hemopexin domain help to cleave triple-helical collagens because the isolated hemopexin domains of MMP-8 does not bind to collagen.<ref>PMID:8489511</ref>
The binding of collagenases to collagen must partially unwind triple helix to allow cleavage of the individual � chains. Since heat-denatured collagens (gelatins) are poorer substrates at 37°C <ref>PMID:6270090</ref>, interaction of collagenase to interstitial collagen must induce conformational change in alpha chain of collagen that fits the substrate bind.
The binding of collagenases to collagen must partially unwind triple helix to allow cleavage of the individual alpha chains. Since heat-denatured collagens (gelatins) are poorer substrates at 37°C <ref>PMID:6270090</ref>, interaction of collagenase to interstitial collagen must induce conformational change in alpha chain of collagen that fits the substrate binding site of the catalytic domain, but the molecular basis of this mechanism is not known.





Revision as of 10:29, 28 January 2016

MMP8

MMP-8, also called, Neutrophil collagenase or Collagenase 2, is a zinc-dependent and calcium-dependent enzyme. It belongs to the matrix metalloproteinase (MMP) family which is involved in the breakdown of extracellular matrix in embryonic development, reproduction, and tissue remodeling, as well as in disease processes, such as arthritis and metastasis. The gene coding this family is localized on the chromosome 11 of Homo sapiens .[1]


MMP-8

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References



RESSOURCE : Image:2oy4 mm1.pdb ( la structure du monomère )