Department of Supramolecular Biology, Graduate School of Nanobioscience, Yokohama City University, 1-7-29, Suehiro-cho, Tsurumi-ku, Yokohama 230-0045, Japan.
J Biol Chem. 2011 Sep 23;286(38):33236-43. doi: 10.1074/jbc.M111.264176. Epub 2011 Aug 3.
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.
与其他基质金属蛋白酶(MMPs)的合成或生理抑制剂不同,具有 ISYGNDALMP 序列的β-淀粉样前体蛋白衍生的抑制肽(APP-IP)对 MMP-2 具有高选择性。我们之前的研究确定了 MMP-2 中对其选择性抑制所必需的氨基酸残基,并证明了十肽抑制剂相对于 MMP-2 的底物结合裂隙的 N 到 C 方向与底物相反。然而,两个分子之间的详细相互作用仍有待阐明。在这里,我们确定了 MMP-2 催化结构域与 APP-IP 复合物的晶体结构。我们发现,复合物中的 APP-IP 确实以与底物相反的 N 到 C 方向嵌入到催化结构域的底物结合裂隙中。通过晶体结构,首次阐明了抑制剂的 Tyr(3)的芳基侧链被容纳在蛋白酶的 S1' 口袋中,并且 APP-IP 的 Asp(6)的羧基二价配位到酶的催化锌上。抑制剂的 Ala(7)到 Pro(10)和 Tyr(3)到 Ile(1)链分别延伸到裂隙的非主链和主链侧。因此,该十肽抑制剂与蛋白酶的底物结合裂隙具有长程接触。这种相互作用模式可能对于抑制剂对 MMP-2 的高选择性是必不可少的,因为 MMPs 在催化中心附近具有共同的结构,但它们的底物结合裂隙的整体结构具有足够的多样性,使抑制剂能够区分 MMP-2 与其他 MMPs。