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Dynamics of the folded and unfolded villin headpiece (HP35) measured with ultrafast 2D IR vibrational echo spectroscopy

机译:使用超快2D红外振动回波光谱仪测量折叠和展开的villin头戴装置(HP35)的动力学

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摘要

A series of two-dimensional infrared vibrational echo experiments performed on nitrile-labeled villin headpiece [HP35-(CN)2] is described. HP35 is a small peptide composed of three alpha helices in the folded configuration. The dynamics of the folded HP35-(CN)2 are compared to that of the guanidine-induced unfolded peptide, as well as the nitrile-functionalized phenylalanine (PheCN), which is used to differentiate the peptide dynamic contributions to the observables from those of the water solvent. Because the viscosity of solvent has a significant effect on fast dynamics, the viscosity of the solvent is held constant by adding glycerol. For the folded peptide, the addition of glycerol to the water solvent causes observable slowing of the peptide’s dynamics. Holding the viscosity constant as GuHCl is added, the dynamics of unfolded peptide are much faster than those of the folded peptide, and they are very similar to that of PheCN. These observations indicate that the local environment of the nitrile in the unfolded peptide resembles that of PheCN, and the dynamics probed by the CN are dominated by the fluctuations of the solvent molecules, in contrast to the observations on the folded peptide.
机译:描述了在腈标记的villin头盔[HP35-(CN)2]上进行的一系列二维红外振动回波实验。 HP35是由三个处于折叠状态的α螺旋组成的小肽。将折叠的HP35-(CN)2的动力学与胍诱导的未折叠肽以及腈官能化的苯丙氨酸(PheCN)的动力学进行了比较,后者用于区分肽对可观察物的动态贡献与水溶剂。由于溶剂的粘度对快速动力学具有重大影响,因此通过添加甘油可使溶剂的粘度保持恒定。对于折叠后的肽,将甘油添加到水溶剂中会导致该肽动力学的明显减慢。当添加GuHCl时保持粘度恒定,未折叠肽的动力学比折叠肽的动力学快得多,并且与PheCN非常相似。这些观察结果表明,与折叠肽的观察相反,未折叠肽中腈的局部环境类似于PheCN,并且CN探测到的动力学受溶剂分子的波动支配。

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