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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Infrared and vibrational CD spectra of partially solvated alpha-helices: DFT-based simulations with explicit solvent
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Infrared and vibrational CD spectra of partially solvated alpha-helices: DFT-based simulations with explicit solvent

机译:部分溶剂化的α螺旋的红外和振动CD光谱:使用显式溶剂的基于DFT的模拟

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Theoretical simulations are used to investigate the effects of aqueous solvent on the vibrational spectra of model alpha-helices, which are only partly exposed to solvent to mimic alpha-helices in proteins. Infrared absorption (IR) and vibrational circular dichroism (VCD) amide I' spectra for 15-amide alanine alpha-helices are simulated using density functional theory (DFT) calculations combined with the property transfer method. The solvent is modeled by explicit water molecules hydrogen bonded to the solvated amide groups. Simulated spectra for two partially solvated model alpha-helices, one corresponding to a more exposed and the other to a more buried structure, are compared to the fully solvated and unsolvated (gas phase) simulations. The dependence of the amide I spectra on the orientation of the partially solvated helix with respect to the solvent and effects of solvation on the amide I' of C-13 isotopically substituted alpha-helices are also investigated. The partial exposure to solvent causes significant broadening of the amide I' bands due to differences in the vibrational frequencies of the explicitly solvated and unsolvated amide groups. The different degree of partial solvation is reflected primarily in the frequency shifts of the unsolvated (buried) amide group vibrations. Depending on which side of the alpha-helix is exposed to solvent, the simulated IR band-shapes exhibit significant changes, from broad and relatively featureless to distinctly split into two maxima. The simulated amide I' VCD band-shapes for the partially solvated alpha-helices parallel the broadening of the IR and exhibit more sign variation, but generally preserve the sign pattern characteristic of the alpha-helical structures and are much less dependent on the alpha-helix orientation with respect to the solvent. The simulated amide I' IR spectra for the model peptides with explicitly hydrogen-bonded water are consistent with the experimental data for small alpha-helical proteins at very low temperatures, but overestimate the effects of solvent on the protein spectra at ambient temperatures, where the peptide-water hydrogen bonds are weakened by thermal motion.
机译:理论模拟用于研究水性溶剂对模型α-螺旋振动光谱的影响,模型α-螺旋仅部分暴露于溶剂以模拟蛋白质中的α-螺旋。使用密度泛函理论(DFT)计算并结合特性转移方法,模拟了15个酰胺丙氨酸α-螺旋的红外吸收(IR)和振动圆二色性(VCD)酰胺I'光谱。溶剂通过氢键合到溶剂化酰胺基团上的明确水分子模拟。将两个部分溶剂化的模型α螺旋的模拟光谱与完全溶剂化和非溶剂化(气相)的模拟进行比较,一个对应于暴露程度更高的模型,另一个对应于更埋藏的结构。还研究了酰胺I光谱对部分溶剂化的螺旋相对于溶剂的取向的依赖性以及溶剂化对C-13同位素取代的α-螺旋的酰胺I'的影响。由于明显溶剂化和未溶剂化的酰胺基团的振动频率不同,部分暴露于溶剂会导致酰胺I'谱带显着加宽。不同程度的部分溶剂化主要反映在未溶剂化(埋藏)的酰胺基团振动的频移上。取决于alpha螺旋的哪一侧暴露在溶剂中,模拟的IR波段形状会显示出显着的变化,从宽泛和相对无特征的变化到明显地分成两个最大值。部分溶剂化的α-螺旋的模拟酰胺I'VCD带形状平行于IR的展宽并显示出更多的符号变化,但通常保留了α-螺旋结构的符号模式特征,并且对α-螺旋的依赖性更小相对于溶剂的螺旋取向。具有显着氢键水的模型肽的模拟酰胺I'IR光谱与非常低温度下的小α螺旋蛋白的实验数据一致,但高估了溶剂对环境温度下蛋白光谱的影响。肽-水的氢键因热运动而减弱。

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