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蛋白质的扩展时间尺度二维红外探针:对氰基硒代苯丙氨酸

Extended timescale 2D IR probes of proteins: p-cyanoselenophenylalanine.

作者信息

Ramos S, Scott K J, Horness R E, Le Sueur A L, Thielges M C

机构信息

Department of Chemistry, Indiana University, Bloomington, Indiana 47401, USA.

出版信息

Phys Chem Chem Phys. 2017 Apr 12;19(15):10081-10086. doi: 10.1039/c7cp00403f.

DOI:10.1039/c7cp00403f
PMID:28367555
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6252261/
Abstract

The importance of dynamics to the function of proteins is well appreciated, but the difficulty in their measurement impedes investigation into their precise role(s). 2D IR spectroscopy is a developing approach for the study of dynamics and has motivated efforts to develop spectrally resolved IR probe groups that enable its application for measuring the dynamics at specific sites in a protein. A challenge with this approach is that the timescales accessible are limited by the vibrational lifetimes of the probes. Toward development of better probes for 2D IR spectroscopy of protein dynamics, we report the characterization of p-cyano-seleno-phenylalanine (CNSePhe), a derivative of the well established IR probe p-cyano-phenylalanine (CNPhe), by FT IR, pump-probe, and 2D IR spectroscopy. The incorporation of the heavy Se atom decouples the CN vibration from the rest in the molecule. Although this leads to a reduction of the transition dipole strength, and thus a reduction in signal intensity, it also dramatically increases the vibrational lifetime, enabling collection of 2D IR spectra for analysis of molecular dynamics on much longer timescales. Interestingly, we also find that the lifetime for CNSePhe shows increased sensitivity to the presence of hydrogen bonding interactions with the CN, suggesting that the probe should be useful for interpretation of CN spectra and possibly for the study of solvation.

摘要

动力学对蛋白质功能的重要性已得到充分认识,但其测量难度阻碍了对其确切作用的研究。二维红外光谱是一种用于研究动力学的新兴方法,促使人们努力开发光谱分辨红外探针基团,以便将其应用于测量蛋白质特定位点的动力学。这种方法面临的一个挑战是,可及的时间尺度受探针振动寿命的限制。为了开发用于蛋白质动力学二维红外光谱的更好探针,我们通过傅里叶变换红外光谱、泵浦 - 探测光谱和二维红外光谱报告了对对氰基 - 硒代苯丙氨酸(CNSePhe)的表征,它是成熟的红外探针对氰基苯丙氨酸(CNPhe)的衍生物。重硒原子的引入使分子中的氰基振动与其他部分解耦。尽管这导致跃迁偶极强度降低,从而信号强度降低,但它也显著增加了振动寿命,使得能够收集二维红外光谱以分析更长时间尺度上的分子动力学。有趣的是,我们还发现CNSePhe的寿命对与氰基形成氢键相互作用的存在表现出更高的敏感性,这表明该探针对于解释氰基光谱以及可能用于溶剂化研究应该是有用的。

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