Department of Chemistry, University of Waterloo, Waterloo, Canada.
Department of Chemistry, University of Waterloo, Waterloo, Canada.
Anal Biochem. 2019 Aug 15;579:44-56. doi: 10.1016/j.ab.2019.03.007. Epub 2019 Mar 20.
Bound metals are observed in a great many natural proteins, where they perform diverse roles in determining protein folding, stability and function. Due to the broad impact of bound metals on biophysical and biochemical properties of proteins, it is valuable to have accurate and facile methods for determining the metal content of proteins. Here we describe an optimized methodology using 4-(2-pyridylazo)resorcinol (PAR) to simultaneously quantify two metal ions in solution. The assay is demonstrated for quantification of Cu and Zn ions in human Cu, Zn superoxide dismutases (SOD1s); however, the method is general and can be applied to various combinations of metal ions. Advantages of the assay are that it is rapid and inexpensive, requires little sample and preparation, and has simple data analysis. We show that spectral decomposition software can accurately resolve the absorption bands of Cu and Zn with high accuracy and precision. Using the PAR assay, we determined that metal binding is altered in disease-associated mutants of SOD1, with comparable results to those determined by ICP-AES. In addition, we highlight key issues for using spectrophotometric chelators such as PAR for metal analysis of proteins.
在许多天然蛋白质中都观察到结合金属,它们在确定蛋白质折叠、稳定性和功能方面发挥着多种作用。由于结合金属对蛋白质的生物物理和生化性质有广泛的影响,因此拥有准确、简便的方法来测定蛋白质中的金属含量是很有价值的。在这里,我们描述了一种使用 4-(2-吡啶偶氮)间苯二酚 (PAR) 同时定量溶液中两种金属离子的优化方法。该测定法用于定量人 Cu、Zn 超氧化物歧化酶 (SOD1) 中的 Cu 和 Zn 离子;然而,该方法是通用的,可以应用于各种金属离子的组合。该测定法的优点是快速、廉价,所需样品和制备量少,数据分析简单。我们表明,光谱分解软件可以准确、高精度地解析 Cu 和 Zn 的吸收带。使用 PAR 测定法,我们确定了 SOD1 疾病相关突变体中的金属结合发生了改变,与 ICP-AES 测定的结果相当。此外,我们还强调了使用分光光度螯合剂(如 PAR)分析蛋白质中的金属时的关键问题。