Sandbox Reserved 1125: Difference between revisions

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==== Ca2+ interactions ====
==== Ca2+ interactions ====
[[Image:CA_pocket_interaction.gif | thumb|CA996 pocket interaction]]This enzyme binds 3 Ca ions, 2 of them in the catalytic domain, which are packed against the top of the beta sheet and mostly have a structural function, stabilizing the catalytic domain.
[[Image:CA_pocket_interaction.gif | thumb|CA996 pocket interaction]]This enzyme binds 3 Ca ions, 2 of them in the catalytic domain, which are packed against the top of the beta sheet and mostly have a structural function, stabilizing the catalytic domain.
The residues involved in the Ca996 interactions (coordinate bonds) are <scene name='71/719866/Ca2_interactions/1'>two Gly residues (169 and 171) next to two Asp residues (137 and 173)</scene>.
The residues involved in the Ca996 interactions (coordinate bonds) are <scene name='71/719866/Ca2_interactions/3'>two Gly residues (169 and 171) next to two Asp residues (137 and 173)</scene>.


==== Zn2+ interactions ====
==== Zn2+ interactions ====
The zinc-binding motif HEXGHXXGXXH presents in the catalytic domain is characteristic for the protease activity of MMP-8.
The zinc-binding motif HEXGHXXGXXH presents in the catalytic domain is characteristic for the protease activity of MMP-8.
===== Zn999 : the catalytic zinc =====
===== Zn999 : the catalytic zinc =====
It is involved in the catalytic activity and is situated at the bottom of the active-site. This ion is penta-coordinated with: His197, His201 and His207 of MMP-8 and with the carbonyl and the hydroxyl oxygen of the hydroxamic acid moiety of the inhibitor. This discovery has been made thanks to the Pro-Leu-Gly-hydroxylamine inhibitor.<ref>PMID:8137810</ref> On this <scene name='71/719866/Zn999_interactions/4'>link</scene> you can only see the 3 His of MMP-8 with the Zn999. The fourth ligand of the catalytic zinc is a water molecule.
It is involved in the catalytic activity and is situated at the bottom of the active-site. This ion is penta-coordinated with: His197, His201 and His207 of MMP-8 and with the carbonyl and the hydroxyl oxygen of the hydroxamic acid moiety of the inhibitor. This discovery has been made thanks to the Pro-Leu-Gly-hydroxylamine inhibitor.<ref>PMID:8137810</ref> On this <scene name='71/719866/Zn999_interactions/5'>link</scene> you can only see the 3 His of MMP-8 with the Zn999. The fourth ligand of the catalytic zinc is a water molecule.
[[Image:ZN pocket interaction.gif | thumb|ZN999 pocket interaction]]
[[Image:ZN pocket interaction.gif | thumb|ZN999 pocket interaction]]
===== Zn998 : the structural zinc =====
===== Zn998 : the structural zinc =====
The residues involved in the Zn998 interactions are <scene name='71/719866/Zn998/1'>an Asp residue (149) next to three His residues (147, 162 and 175)</scene>. The glutamic acid adjacent to the first histidine is essential for catalysis. It should be noted that scientists were unable to exchange or remove this Zinc in their crystals, which is suggesting that there is a tight interaction with MMP-8.<ref>PMID:8137810</ref>
The residues involved in the Zn998 interactions are <scene name='71/719866/Zn998/2'>an Asp residue (149) next to three His residues (147, 162 and 175)</scene>. The glutamic acid adjacent to the first histidine is essential for catalysis. It should be noted that scientists were unable to exchange or remove this Zinc in their crystals, which is suggesting that there is a tight interaction with MMP-8.<ref>PMID:8137810</ref>


=== Hinge domain ===
=== Hinge domain ===

Revision as of 22:11, 29 January 2016

MMP-8

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 with 467 residues.[1]


MMP-8

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References



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