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=== Catalytic domain ===
=== Catalytic domain ===
Thanks to X-ray crystallography, the catalytic domain structure has been solved with 1,7 Å resolution (2OY4).This domain is composed of 157 residues, from Met86 to Gly242, organized in <scene name='71/719866/Helixes/4'>three alpha helixes</scene> and <scene name='71/719866/Sheets/3'>five beta sheets</scene>.The protein folding and especially the zinc environment of the collagenase catalytic domain is very close to the astacins and the snake venom metalloproteinases. The catalytic domain alone has proteolytic activity against other protein substrates and synthetic substrates.<ref name="X-ray">PMID:8137810</ref>
Thanks to X-ray crystallography, the catalytic domain structure has been solved with 1,7 Å resolution (2OY4).This domain is composed of 157 residues, from Met86 to Gly242, organized in <scene name='71/719866/Helixes/4'>three alpha helixes</scene> and <scene name='71/719866/Sheets/3'>five beta sheets</scene>.The protein folding and especially the zinc environment of the collagenase catalytic domain is very close to the astacins and the snake venom metalloproteinases. The catalytic domain alone has proteolytic activity against other protein substrates and synthetic substrates.<ref name="X-ray">PMID:8137810</ref>
==== Subsites ====
Besides the catalytic site, the MMPs have other sites called subsites which can also interact with the substrates and inhibitors. Conventionally, the subsites on the left of the catalytic Zn2+ are designated as S1, S2, S3,..., Sn and the ones on the right are known as S1', S2', etc.
One of these subsites, the S1' pocket, is the main subsite for the substrate recognition. This pocket is variable in amino acid composition and depth and can be used to classify the MMPs.
MMP-8 belongs to the class of the intermediate MMPs according to the depth of its <scene name='71/719866/S1prime_pocket/1'>S1' pocket</scene>.<ref>PMID:22642189</ref>
This pocket is delimited by the Leu193, Val194, His197, Leu214, Tyr216, Tyr219, Ala220 and Arg222 residues.<ref>PMID:17275314</ref>.
Moreover this pocket is rich in hydrophobic amino acids, what is suitable for binding to the substrates of MMP-8.


==== Ca2+ interactions ====
==== Ca2+ interactions ====
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==== Subsites ====
Besides the catalytic site, the MMPs have other sites called subsites which can also interact with the substrates and inhibitors. Conventionally, the subsites on the left of the catalytic Zn2+ are designated as S1, S2, S3,..., Sn and the ones on the right are known as S1', S2', etc.


One of these subsites, the S1' pocket, is the main subsite for the substrate recognition. This pocket is variable in amino acid composition and depth and can be used to classify the MMPs.
 
MMP-8 belongs to the class of the intermediate MMPs according to the depth of its <scene name='71/719866/S1prime_pocket/1'>S1' pocket</scene>.<ref>PMID:22642189</ref>
 
This pocket is delimited by the Leu193, Val194, His197, Leu214, Tyr216, Tyr219, Ala220 and Arg222 residues.<ref>PMID:17275314</ref>.
Moreover this pocket is rich in hydrophobic amino acids, what is suitable for binding to the substrates of MMP-8.





Revision as of 17:18, 30 January 2016

Matrix metalloproteinase-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. The gene coding this family is localized on the chromosome 11 of Homo sapiens with 467 residues.[1]

Here is the reloading for the initial structure of the catalytic domain of MMP-8.

MMP-8 catalytic domain

Drag the structure with the mouse to rotate

References