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Differential Processing of {alpha}- and {beta}-Defensin Precursors by Matrix Metalloproteinase-7 (MMP-7)
Carole L Wilson1, Amy P Schmidt, Emma Pirilä
1Department of Pathology and Center for Lung Biology, University of Washington, Seattle, Washington 98104, USA. carolew2@u.washington.edu
Abstract:
Proteolytic processing of defensins is a critical mode of posttranslational regulation of peptide activity. Because mouse alpha-defensin precursors are cleaved and activated by matrix metalloproteinase-7 (MMP-7), we determined if additional defensin molecules, namely human neutrophil defensin pro-HNP-1 and beta-defensins, are targets for MMP-7. We found that MMP-7 cleaves within the pro-domain of the HNP-1 precursor, a reaction that does not generate the mature peptide but produces a 59-amino acid intermediate. This intermediate, which retains the carboxyl-terminal end of the pro-domain, had antimicrobial activity, indicating that the residues important for masking defensin activity reside in the amino terminus of this domain. Mature HNP-1 was resistant to processing by MMP-7 unless the peptide was reduced and alkylated, demonstrating that only the pro-domain of alpha-defensins is normally accessible for cleavage by this enzyme. From the 47-residue HBD-1 precursor, MMP-7 catalyzed removal of 6 amino acids from the amino terminus. Neither a 39-residue intermediate form of HBD-1 nor the mature 36-residue form of HBD-1 was cleaved by MMP-7. In addition, both pro-HBD-2, with its shorter amino-terminal extension, and pro-HBD-3 were resistant to MMP-7. However, human and mouse beta-defensin precursors that lack disulfide bonding contain a cryptic MMP-7-sensitive site within the mature peptide moiety. These findings support and extend accumulating evidence that the native three-dimensional structure of both alpha- and beta-defensins protects the mature peptides against proteolytic processing by MMP-7. We also conclude that sites for MMP-7 cleavage are more common at the amino termini of alpha-defensin rather than beta-defensin precursors, and that catalysis at these sites in alpha-defensin pro-domains results in acquisition of defensin activity.
Insights
Matrix metalloproteinase-7 (MMP-7) processes defensin precursors, activating antimicrobial peptides. MMP-7 targets alpha-defensin pro-domains, but beta-defensins show varied susceptibility, with native structures protecting mature peptides.
Area of Science:
- Biochemistry
- Molecular Biology
- Immunology
Background:
- Defensins are antimicrobial peptides crucial for innate immunity.
- Posttranslational modification, including proteolytic processing, regulates defensin activity.
- Matrix metalloproteinase-7 (MMP-7) is known to activate mouse alpha-defensins.
Purpose of the Study:
- To investigate if human defensin precursors (pro-HNP-1 and beta-defensins) are substrates for MMP-7.
- To characterize the products of MMP-7 cleavage on defensin precursors.
- To understand the structural basis for MMP-7 susceptibility in defensins.
Main Methods:
- In vitro cleavage assays using purified MMP-7 and various defensin precursors (pro-HNP-1, pro-HBD-1, pro-HBD-2, pro-HBD-3).
- Analysis of cleavage products by size and activity.
- Testing of mature defensins and intermediates for MMP-7 susceptibility under different conditions (reduced/alkylated).
Main Results:
- MMP-7 cleaved human neutrophil defensin pro-HNP-1 within the pro-domain, generating an intermediate with antimicrobial activity.
- MMP-7 processed human beta-defensin 1 (HBD-1) precursor by removing N-terminal amino acids, but not intermediate or mature forms.
- Pro-HBD-2 and pro-HBD-3 were resistant to MMP-7; however, disulfide-bond-lacking beta-defensin precursors revealed cryptic MMP-7 sites within the mature peptide.
- Mature alpha- and beta-defensins, in their native conformation, resisted MMP-7 cleavage.
Conclusions:
- MMP-7 preferentially cleaves alpha-defensin pro-domains, activating antimicrobial activity.
- The three-dimensional structure of mature defensins protects them from MMP-7.
- Cleavage site accessibility differs between alpha- and beta-defensin precursors, with alpha-defensins showing more common N-terminal pro-domain cleavage sites.
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