Department of Chemistry, Massachusetts Institute of Technology, 77 Massachusetts Avenue, 6-213 Cambridge, Massachusetts 02139, USA.
J Phys Chem A. 2009 Dec 24;113(51):14060-6. doi: 10.1021/jp906256s.
We develop heterodyned dispersed vibrational echo spectroscopy (HDVE) and demonstrate the new capabilities in biophysical applications. HDVE is a robust ultrafast technique that provides a characterization of the real and imaginary components of third-order nonlinear signals with high sensitivity and single-laser-shot capability and can be used to extract dispersed pump-probe and dispersed vibrational echo spectra. Four methods for acquiring HDVE phase and amplitude spectra were compared: Fourier transform spectral interferometry, a new phase modulation spectral interferometry technique, and combination schemes. These extraction techniques were demonstrated in the context of protein amide I spectroscopy. Experimental HDVE and heterodyned free induction decay amide I spectra were explicitly compared to conventional dispersed pump-probe, dispersed vibrational echo, and absorption spectra. The new capabilities of HDVE were demonstrated by acquiring single-shot spectra and melting curves of ubiquitin and concentration-dependent spectra of insulin suitable for extracting the binding constant for dimerization. The introduced techniques will prove particularly useful in transient experiments, studying irreversible reactions, and micromolar concentration studies of small proteins.
我们开发了外差频分振动回波光谱(HDVE),并在生物物理应用中展示了新的功能。HDVE 是一种强大的超快技术,可提供具有高灵敏度和单激光射击能力的三阶非线性信号的实部和虚部的特征,可用于提取频分泵探针和频分振动回波光谱。比较了获取 HDVE 相位和幅度谱的四种方法:傅里叶变换光谱干涉法、新的相位调制光谱干涉技术和组合方案。这些提取技术在蛋白质酰胺 I 光谱学中得到了验证。实验性 HDVE 和外差自由感应衰减酰胺 I 光谱与传统的频分泵探针、频分振动回波和吸收光谱进行了明确比较。通过获取单次光谱和尿酸的熔融曲线以及适用于提取二聚化结合常数的胰岛素浓度依赖性光谱,展示了 HDVE 的新功能。所介绍的技术将特别有用与瞬态实验、研究不可逆反应和小蛋白质的微摩尔浓度研究。