Publication Details
ID: 59TIMP-1 contact sites and perturbations of stromelysin 1 mapped by NMR and a paramagnetic surface probe.
Authors
Arumugam S; Hemme CL; Yoshida N; Suzuki K; Nagase H; Berjanskii M; Wu B; Van Doren SR
Journal/Conference
Biochemistry Vol. 37 (27) , pp. 9650-7
Abstract
Surfaces of the 173 residue catalytic domain of human matrix metalloproteinase 3 (MMP-3(DeltaC)) affected by binding of the N-terminal, 126 residue inhibitory domain of human TIMP-1 (N-TIMP-1) have been investigated using an amide-directed, NMR-based approach. The interface was mapped by a novel method that compares amide proton line broadening by paramagnetic Gd-EDTA in the presence and absence of the binding partner. The results are consistent with the X-ray model of the complex of MMP-3(DeltaC) with TIMP-1 (Gomis-Ruth et al. (1997) Nature 389, 77-81). Residues Tyr155, Asn162, Val163, Leu164, His166, Ala167, Ala169, and Phe210 of MMP-3(DeltaC) are protected from broadening by the Gd-EDTA probe by binding to N-TIMP-1. N-TIMP-1-induced exposure of backbone amides of Asp238, Asn240, Gly241, and Ser244 of helix C of MMP-3(DeltaC) to Gd-EDTA confirms that the displacement of the N-terminus of MMP-3(DeltaC) occurs not only in the crystal but also in solution. These results validate comparative paramagnetic surface probing as a means of mapping protein-protein interfaces. Novel N-TIMP-1-dependent changes in hydrogen bonding near the active site of MMP-3(DeltaC) are reported. N-TIMP-1 binding causes the amide of Tyr223 of MMP-3(DeltaC) bound by N-TIMP-1 to exchange with water rapidly, implying a lack of the hydrogen bond observed in the crystal structure. The backbone amide proton of Asn162 becomes protected from rapid exchange upon forming a complex with N-TIMP-1 and could form a hydrogen bond to N-TIMP-1. N-TIMP-1 binding dramatically increases the rate of amide hydrogen exchange of Asp177 of the fifth beta strand of MMP-3(DeltaC), disrupting its otherwise stable hydrogen bond.
Publication Info
- Year: 1998
- Publication Date: July 10, 1998
- Citations: 62
- Source: Google Scholar
Identifiers
- DOI: 10.1021/bi980128h
- PubMed ID: 9657677
- ISSN: 0006-2960 (Print) 0006-2960 (Linking)
- Google Scholar ID: qjMakFHDy7sC
PubMed Data
MeSH Terms
- 3/*chemistry/metabolism;
- Amides/chemistry;
- Acid;
- Binding
- Biomolecular;
- Edetic
- Fragments/chemistry/metabolism;
- Gadolinium;
- Humans;
- Inhibitor
- Matrix
- Metalloproteinase
- Models,
- Molecular;
- Molecular
- Magnetic
- Metalloproteinase-1/*chemistry/metabolism
- Nuclear
- Probes;
- Peptide
- Protons;
- Proteins/chemistry/metabolism;
- Resonance,
- Recombinant
- Sites;
- Tissue
- of
Additional Information
- Publication Type: Journal Article; Research Support, Non-U.S. Gov't;
- Language: eng
- Last PubMed Update: April 22, 2025