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首页> 外文期刊>Journal of the American Society for Mass Spectrometry >A new methodology for monitoring the activity of cdMMP-12 anchored and freeze-dried on Au(111)
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A new methodology for monitoring the activity of cdMMP-12 anchored and freeze-dried on Au(111)

机译:监测锚定并冻干在Au(111)上的cdMMP-12活性的新方法

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摘要

Matrix metalloproteinases (MMPs) are cell-secreted soluble and membrane-tethered enzymes that are capable of degrading extracellular matrix proteins, but also can process a number of bioactive molecules. They are involved in the cleavage of cell surface receptors, but are also thought to play a major role on cell behaviors as well as in diverse physiological and pathological processes, including embryonic development, wound repair, inflammatory diseases, and cancer. For these reasons, it is obvious that a control over MMPs activity is highly desirable. Consequently, the frantic search for new inhibitors has been coupled to the development of high-throughput methods able to rapidly screen the effect of possible MMP inhibitors on the activity of these enzymes. In this scenario, solid-state-based methods play a major role because of their compatibility with array formats that are able to extract more information from smaller sample volumes and offer some important advantages that are not available in the standard solution assays. In this work, the catalytic domain of MMP-12 was immobilized on a gold substrate and the surface coverage was measured by FT-SPR experiments. A new experimental procedure was developed to freeze-dry the anchored molecules and their activity was measured by ESI-MS. The kinetics parameters obtained for the immobilized enzyme are in good accordance with those reported for similar systems in solution. Inhibition of the immobilized molecules was also carried out, demonstrating the applicability of the method for rapid screening of MMP inhibitors.
机译:基质金属蛋白酶(MMP)是细胞分泌的可溶性膜固定酶,能够降解细胞外基质蛋白,但也可以处理许多生物活性分子。它们参与细胞表面受体的裂解,但也被认为在细胞行为以及包括胚胎发育,伤口修复,炎性疾病和癌症在内的各种生理和病理过程中起着重要作用。由于这些原因,很显然,非常需要控制MMP活性。因此,对新抑制剂的疯狂搜寻与能够快速筛选可能的MMP抑制剂对这些酶活性的影响的高通量方法的开发相结合。在这种情况下,基于固态的方法起着主要作用,因为它们与能够从较小样品量中提取更多信息的阵列格式兼容,并提供了标准溶液测定法无法提供的一些重要优势。在这项工作中,MMP-12的催化结构域被固定在金基底上,并且通过FT-SPR实验测量了表面覆盖率。开发了一种新的实验程序以冷冻干燥锚定的分子,并通过ESI-MS测量其活性。固定化酶的动力学参数与溶液中类似系统的报道动力学参数完全一致。还进行了固定分子的抑制,证明了该方法可用于MMP抑制剂的快速筛选。

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