WestCHEM, Department of Pure and Applied Chemistry, University of Strathclyde, Technology and Innovation Centre, 99 George Street, Glasgow G1 1RD, United Kingdom.
School of Medicine, Faculty of Clinical Biomedical Sciences, University of Central Lancashire, Preston PR1 2HE, United Kingdom.
J Chem Phys. 2023 Jan 21;158(3):030901. doi: 10.1063/5.0129480.
The form of the amide I infrared absorption band provides a sensitive probe of the secondary structure and dynamics of proteins in the solution phase. However, the frequency coincidence of the amide I band with the bending vibrational mode of HO has necessitated the widespread use of deuterated solvents. Recently, it has been demonstrated that ultrafast 2D-IR spectroscopy allows the detection of the protein amide I band in HO-based fluids, meaning that IR methods can now be applied to study proteins in physiologically relevant solvents. In this perspective, we describe the basis of the 2D-IR method for observing the protein amide I band in HO and show how this development has the potential to impact areas ranging from our fundamental appreciation of protein structural dynamics to new applications for 2D-IR spectroscopy in the analytical and biomedical sciences. In addition, we discuss how the spectral response of water, rather than being a hindrance, now provides a basis for new approaches to data pre-processing, standardization of 2D-IR data collection, and signal quantification. Ultimately, we visualize a direction of travel toward the creation of 2D-IR spectral libraries that can be linked to advanced computational methods for use in high-throughput protein screening and disease diagnosis.
酰胺 I 红外吸收带的形式为研究溶液相蛋白质的二级结构和动力学提供了一个敏感的探针。然而,酰胺 I 带与 HO 弯曲振动模式的频率重合,这使得广泛使用氘代溶剂成为必要。最近,已经证明超快 2D-IR 光谱法允许在基于 HO 的流体中检测蛋白质的酰胺 I 带,这意味着 IR 方法现在可以应用于研究生理相关溶剂中的蛋白质。在这篇观点文章中,我们描述了在 HO 中观察蛋白质酰胺 I 带的 2D-IR 方法的基础,并展示了这一发展如何有可能影响从我们对蛋白质结构动力学的基本认识到 2D-IR 光谱在分析和生物医学科学中的新应用等各个领域。此外,我们还讨论了水的光谱响应如何不再是障碍,而是为数据预处理、2D-IR 数据采集的标准化以及信号量化的新方法提供了基础。最终,我们设想了一个方向,即创建可以与高级计算方法相关联的 2D-IR 光谱库,用于高通量蛋白质筛选和疾病诊断。