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Dynamics of Proteins Encapsulated in Silica Sol-gel Glasses Studied with IR Vibrational Echo Spectroscopy

机译:红外振动回波光谱法研究硅胶溶胶凝胶玻璃中蛋白质的动力学

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摘要

Spectrally-resolved infrared stimulated vibrational echo spectroscopy is used to measure the fast dynamics of heme-bound CO in carbonmonoxy-myoglobin (MbCO) and hemoglobin (HbCO) embedded in silica sol-gel glasses. On the time scale of ~100 fs to several ps, the vibrational dephasing of the heme-bound CO is measurably slower for both MbCO and HbCO relative to aqueous protein solutions. The fast structural dynamics of MbCO, as sensed by the heme-bound CO, are influenced more by the sol-gel environment than those of HbCO. Longer time scale structural dynamics (tens of ps), as measured by the extent of spectral diffusion, are the same for both proteins encapsulated in sol-gel glasses compared to aqueous solutions. A comparison of the sol-gel experimental results to viscosity dependent vibrational echo data taken on various mixtures of water and fructose shows that the sol-gel encapsulated MbCO exhibits dynamics that are the equivalent to the protein in a solution that is nearly 20 times more viscous than bulk water. In contrast, the HbCO dephasing in the sol-gel reflects only a 2-fold increase in viscosity. Attempts to alter the encapsulating pore size by varying the molar ratio of silane precursor to water (R-value) used to prepare the sol-gel glasses were found to have no effect on the fast or steady-state spectroscopic results. The vibrational echo data are discussed in the context of solvent confinement and protein-pore wall interactions to provide insights into the influence of a confined environment on the fast structural dynamics experienced by a biomolecule.
机译:光谱分辨红外激发振动回波光谱用于测量嵌在二氧化硅溶胶-凝胶玻璃中的碳一氧化肌红蛋白(MbCO)和血红蛋白(HbCO)中血红素结合的CO的快速动力学。在〜100 fs到几ps的时间范围内,与MbCO和HbCO相比,血红素结合的CO的振动移相相对于蛋白质水溶液而言明显较慢。血红素结合的CO感测到MbCO的快速结构动力学比HbCO受到溶胶-凝胶环境的影响更大。与水溶液相比,封装在溶胶凝胶玻璃中的两种蛋白质的较长时间尺度的结构动力学(几十ps)(通过光谱扩散程度来衡量)是相同的。将溶胶-凝胶实验结果与对水和果糖的各种混合物获得的粘度依赖性振动回波数据进行比较,结果表明,溶胶-凝胶包裹的MbCO的动力学特性与溶液中蛋白质的等效性高出近20倍比散装水相反,溶胶-凝胶中HbCO的相移仅反映出粘度增加了2倍。尝试通过改变用于制备溶胶-凝胶玻璃的硅烷前体与水的摩尔比(R值)来改变包封孔径对快速或稳态光谱结果没有影响。在溶剂限制和蛋白质-孔壁相互作用的背景下讨论了振动回波数据,以提供对受限环境对生物分子所经历的快速结构动力学的影响的见解。

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