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Electrochemical and structural properties of a protein system designed to generate tyrosine pourbaix diagrams

机译:设计用于产生酪氨酸pourbaix图的蛋白质系统的电化学和结构特性

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摘要

This report describes a model protein specifically tailored to electrochemically study the reduction potential of protein tyrosine radicals as a function of pH. The model system is based on the 67-residue α 3Y three-helix bundle. α 3Y contains a single buried tyrosine at position 32 and displays structural properties inherent to a protein. The present report presents differential pulse voltammograms obtained from α 3Y at both acidic (pH 5.6) and alkaline (pH 8.3) conditions. The observed Faradaic response is uniquely associated with Y32, as shown by site-directed mutagenesis. This is the first time voltammetry is successfully applied to detect a redox-active tyrosine residing in a structured protein environment. Tyrosine is a proton-coupled electron-transfer cofactor making voltammetry-based pH titrations a central experimental approach. A second set of experiments was performed to demonstrate that pH-dependent studies can be conducted on the redox-active tyrosine without introducing large-scale structural changes in the protein scaffold. α 3Y was re-engineered with the specific aim to place the imidazole group of a histidine close to the Y32 phenol ring. α 3Y-K29H and α 3Y-K36H each contain a histidine residue whose protonation perturbs the fluorescence of Y32. We show that these variants are stable and well-folded proteins whose helical content, tertiary structure, solution aggregation state, and solvent-sequestered position of Y32 remain pH insensitive across a range of at least 3-4 pH units. These results confirm that the local environment of Y32 can be altered and the resulting radical site studied by voltammetry over a broad pH range without interference from long-range structural effects. © 2011 American Chemical Society.
机译:该报告描述了一种模型蛋白,专门用于电化学研究蛋白酪氨酸自由基作为pH的函数的还原电位。该模型系统基于67个残基的α3Y三螺旋束。 α3Y在位置32处包含一个单独的酪氨酸,并显示蛋白质固有的结构特性。本报告介绍了在酸性(pH 5.6)和碱性(pH 8.3)条件下从α3Y获得的差分脉冲伏安图。如定点诱变所示,观察到的法拉第反应与Y32唯一相关。这是伏安法首次成功应用于检测结构化蛋白质环境中的氧化还原活性酪氨酸。酪氨酸是一种质子偶联的电子转移辅助因子,使基于伏安法的pH滴定成为主要的实验方法。进行第二组实验以证明可以对氧化还原活性酪氨酸进行pH依赖性研究,而不会在蛋白质支架中引入大规模的结构变化。重新设计了α3Y,其特定目的是将组氨酸的咪唑基团靠近Y32苯酚环。 α3Y-K29H和α3Y-K36H各自含有一个组氨酸残基,其质子化干扰了Y32的荧光。我们显示这些变体是稳定且折叠良好的蛋白质,其螺旋含量,三级结构,溶液聚集状态和Y32的溶剂隔离位置在至少3-4个pH单位范围内保持pH不敏感。这些结果证实,Y32的局部环境可以改变,并且通过伏安法在较宽的pH范围内研究所得的自由基位点,而不会受到远程结构效应的干扰。 ©2011美国化学学会。

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