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Electrocatalytic Assay for Monitoring Methylglyoxal-Mediated Protein Glycation

机译:监测甲基乙二醛介导的蛋白质糖基化的电催化分析

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Protein glycation is a complex process that plays an important role in diabetes mellitus, aging, and the regulation of protein function in general. As a result, current methodological research on proteins is focused on the development of novel approaches for investigating glycation and the possibility of monitoring its modulation and selective inhibition. In this paper, a first sensing strategy for protein glycation is proposed, based on protein electroactivity measurement. Concretely, the label-free method proposed is based on the application of a constant-current chronopotentiometric stripping (CPS) analysis at Hg-containing electrodes. The glycation process was monitored as the decrease in the electrocatalytic protein signal, peak H, observed at highly negative potentials at around -1.8 V (vs Ag/AgCl3 M KCl), which was previously ascribed to a catalytic hydrogen evolution reaction (CHER). Using this method, a model protein bovine serum albumin was investigated over 3 days of incubation with the glycation agent methylglyoxal in the absence or presence of the glycation inhibitor aminoguanidine (pimagedine). The electrochemical methodology presented here could open up new possibilities in research on protein glycation and oxidative modification. The methodology developed also provides a new option for the analysis of protein intermolecular interactions using electrochemical sensors, which was demonstrated by the application of a silver solid amalgam electrode (AgSAE) for monitoring the glycation process in samples of bovine serum albumin, human serum albumin, and lysozyme.
机译:蛋白质糖基化是一个复杂的过程,通常在糖尿病,衰老和蛋白质功能的调节中起重要作用。结果,当前对蛋白质的方法学研究集中于研究糖基化的新方法的发展以及监测其调节和选择性抑制的可能性。在本文中,基于蛋白质电活性测量,提出了一种蛋白质糖基化的第一种传感策略。具体而言,提出的无标记方法是基于在含汞电极上进行恒流计时电位溶出(CPS)分析的应用。监测糖基化过程,方法是在-1.8 V左右(相对于Ag / AgCl3 M KCl)的高负电势下观察到的电催化蛋白质信号H峰H的降低,这先前归因于催化氢释放反应(CHER)。使用这种方法,在不存在或存在糖基化抑制剂氨基胍(pimagedine)的情况下,与糖基化剂甲基乙二醛孵育3天,研究了模型蛋白牛血清白蛋白。本文介绍的电化学方法可以为蛋白质糖基化和氧化修饰研究开辟新的可能性。所开发的方法学还为使用电化学传感器分析蛋白质分子间相互作用提供了新的选择,这一点已通过应用银固体汞齐电极(AgSAE)监测牛血清白蛋白,人血清白蛋白,和溶菌酶。

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