4.5 Article

Inhibition of MMP-2 gelatinolysis by targeting exodomain-substrate interactions

期刊

BIOCHEMICAL JOURNAL
卷 406, 期 -, 页码 147-155

出版社

PORTLAND PRESS LTD
DOI: 10.1042/BJ20070591

关键词

collagen; collagen-binding domain (CBD); exodomain; gelatinolysis; matrix metalloproteinase 2 (MMP-2); matrix metalloproteinase inhibitor

资金

  1. NIDCR NIH HHS [R01 DE014236, K02 DE016312, DE14236, DE016312, DE12818] Funding Source: Medline

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MMP-2 (matrix metalloproteinase 2) contains a CBD (collagen-binding domain), which is essential for positioning gelatin substrate molecules relative to the catalytic site for cleavage. Deletion of the CBD or disruption of CBD-mediated gelatin binding inhibits gelatinolysis by MMP-2. To identify CBD-binding sites on type I collagen and collagen peptides with the capacity to compete CBD binding of gelatin and thereby inhibit gelatinolysis by MMP-2, we screened a one-bead one-peptide combinatorial peptide library with recombinant CBD as bait. Analyses of sequences from the CBD-binding peptides pointed to residues 715-721 in human a 1 (1) collagen chain as a binding site for CBD. A peptide (P713) including this collagen segment was synthesized for analyses. In SPR (surface plasmon resonance) assays, the CBD and MMP-2(E404A), a catalytically inactive MMP-2 mutant, both bound immobilized P713 in a concentration-dependent manner, but not a scrambled control peptide. Furthermore, P713 competed gelatin binding by the CBD and MMP-2(E404A). in control assays, neither of the non-collagen binding alkylated CBD or MMP-2 with deletion of CBD (MMP-2 Delta CBD) bound P713. Consistent with the exodomain functions of the CBD, P713 inhibited similar to 90% of the MMP-2 gelatin cleavage, but less than 20 % of the MMP-2 activity on a peptide substrate (NFF-1) which does not require the CBD for cleavage. Confirming the specificity of the inhibition, P713 did not alter MMP-2 Delta CBD or MMP-8 activities. These experiments identified a CBD-binding site on type I collagen and demonstrated that a corresponding synthetic peptide can inhibit hydrolysis of type I and IV collagens by competing CBD-mediated gelatin binding to MMP-2.

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