Abstract
Protease-substrate interactions are governed by a variety of structural features. Although the substrate sequence specificities of numerous proteases have been established, "topological specificities," whereby proteases may be classified based on recognition of distinct three-dimensional structural motifs, have not. The aggrecanase members of the ADAMTS (a disintegrin and metalloproteinase with thrombospondin motifs) family cleave a variety of proteins but do not seem to possess distinct sequence specificities. In the present study, the topological substrate specificity of ADAMTS-4 (aggrecanase-1) was examined using triple-helical or single-stranded poly(Pro) II helical peptides. Substrate topology modulated the affinity and sequence specificity of ADAMTS-4 with Km values indicating a preference for triple-helical structure. In turn, non-catalytic ADAMTS-4 domains were critical for hydrolysis of triple-helical and poly(Pro) II helical substrates. Comparison of ADAMTS-4 with MMP-1 (collagenase 1), MMP-13 (collagenase 3), trypsin, and thermolysin using triple-helical peptide (THP) and single-stranded peptide (SSP) substrates demonstrated that all five proteases possessed efficient "triple-helical peptidase" activity and fell into one of two categories: (k cat/Km)SSP > (kcat/K m)THP (thermolysin, trypsin, and MMP-13) or (k cat/Km)THP ≥ (kcat/K m)SSP and (Km)SSP > (K m)THP (MMP-1 and ADAMTS-4). Overall these results suggest that topological specificity may be a guiding principle for protease behavior and can be utilized to design specific substrates and inhibitors. The triple-helical and single-stranded poly(Pro) II helical peptides represent the first synthetic substrates successfully designed for aggrecanases.
| Original language | English |
|---|---|
| Pages (from-to) | 142-150 |
| Number of pages | 9 |
| Journal | Journal of Biological Chemistry |
| Volume | 282 |
| Issue number | 1 |
| DOIs | |
| State | Published - Jan 5 2007 |
| Externally published | Yes |
ASJC Scopus Subject Areas
- Biochemistry
- Molecular Biology
- Cell Biology
Keywords
- ADAM Proteins/chemistry
- ADAMTS4 Protein
- Amino Acid Sequence
- Circular Dichroism
- Escherichia coli/metabolism
- Humans
- Kinetics
- Matrix Metalloproteinase 1/chemistry
- Matrix Metalloproteinase 13/chemistry
- Molecular Sequence Data
- Peptides/chemistry
- Procollagen N-Endopeptidase/chemistry
- Protein Binding
- Protein Conformation
- Protein Structure, Secondary
- Substrate Specificity
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