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Mechanistic investigations of matrix metalloproteinase-8 inhibition by metal abstraction peptide

机译:金属提取肽抑制基质金属蛋白酶8的机理研究

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摘要

The mechanism of matrix metalloproteinase-8 (MMP-8) inhibition was investigated using ellipsometric measurements of the interaction of MMP-8 with a surface bound peptide inhibitor, tether-metal abstraction peptide (MAP), bound to self-assembled monolayer films. MMP-8 is a collagenase whose activity and dysregulation have been implicated in a number of disease states, including cancer metastasis, diabetic neuropathy, and degradation of biomedical reconstructions, including dental restorations. Regulation of activity of MMP-8 and other matrix metalloproteinases is thus a significant, but challenging, therapeutic target. Strong inhibition of MMP-8 activity has recently been achieved via the small metal binding peptide tether-MAP. Here, the authors elucidate the mechanism of this inhibition and demonstrate that it occurs through the direct interaction of the MAP Tag and the Zn2+ binding site in the MMP-8 active site. This enhanced understanding of the mechanism of inhibition will allow the design of more potent inhibitors as well as assays important for monitoring critical MMP levels in disease states.
机译:基质金属蛋白酶8(MMP-8)抑制的机制是通过椭圆偏振测量法测量的MMP-8与结合到自组装单层膜上的表面结合肽抑制剂系链金属提取肽(MAP)的相互作用而进行的。 MMP-8是一种胶原酶,其活性和失调与多种疾病状态有关,包括癌症转移,糖尿病性神经病变和包括牙齿修复在内的生物医学重建物的降解。因此,MMP-8和其他基质金属蛋白酶的活性调节是一个重要的但具有挑战性的治疗目标。最近,通过小金属结合肽系链-MAP实现了对MMP-8活性的强烈抑制。在这里,作者阐明了这种抑制的机制,并证明了它是通过MAP标签与MMP-8活性位点中Zn 2 + 结合位点的直接相互作用而发生的。对抑制机制的这种加深了解将允许设计更有效的抑制剂以及对监测疾病状态下的关键MMP水平重要的检测方法。

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