Structural basis for matrix metalloproteinase-2 (MMP-2)-selective inhibitory action of β-amyloid precursor protein-derived inhibitor.

J Biol Chem

Department of Supramolecular Biology, Graduate School of Nanobioscience, Yokohama City University, 1-7-29, Suehiro-cho, Tsurumi-ku, Yokohama 230-0045, Japan.

Published: September 2011

AI Article Synopsis

  • The β-amyloid precursor protein-derived inhibitory peptide (APP-IP) has a specific ability to inhibit matrix metalloproteinase-2 (MMP-2), distinguishing it from other inhibitors.
  • Through previous studies, researchers identified key amino acid interactions necessary for APP-IP's selective inhibition of MMP-2, as its orientation differs from the substrate's.
  • By determining the crystal structure of MMP-2 with APP-IP, it was revealed how specific amino acid residues of APP-IP fit into the enzyme's structure, enhancing its selectivity compared to other MMPs due to unique variations in their substrate-binding clefts.

Article Abstract

Unlike other synthetic or physiological inhibitors for matrix metalloproteinases (MMPs), the β-amyloid precursor protein-derived inhibitory peptide (APP-IP) having an ISYGNDALMP sequence has a high selectivity toward MMP-2. Our previous study identified amino acid residues of MMP-2 essential for its selective inhibition by APP-IP and demonstrated that the N to C direction of the decapeptide inhibitor relative to the substrate-binding cleft of MMP-2 is opposite that of substrate. However, detailed interactions between the two molecules remained to be clarified. Here, we determined the crystal structure of the catalytic domain of MMP-2 in complex with APP-IP. We found that APP-IP in the complex is indeed embedded into the substrate-binding cleft of the catalytic domain in the N to C direction opposite that of substrate. With the crystal structure, it was first clarified that the aromatic side chain of Tyr(3) of the inhibitor is accommodated into the S1' pocket of the protease, and the carboxylate group of Asp(6) of APP-IP coordinates bidentately to the catalytic zinc of the enzyme. The Ala(7) to Pro(10) and Tyr(3) to Ile(1) strands of the inhibitor extend into the nonprime and the prime sides of the cleft, respectively. Therefore, the decapeptide inhibitor has long range contact with the substrate-binding cleft of the protease. This mode of interaction is probably essential for the high MMP-2 selectivity of the inhibitor because MMPs share a common architecture in the vicinity of the catalytic center, but whole structures of their substrate-binding clefts have sufficient variety for the inhibitor to distinguish MMP-2 from other MMPs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3190879PMC
http://dx.doi.org/10.1074/jbc.M111.264176DOI Listing

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