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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Inner-Shell Excitation Spectroscopy of the Peptide Bond: Comparison of the C 1s, N 1s, and O 1s Spectra of Glycine, Glycyl-Glycine, and Glycyl-Glycyl-Glycine
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Inner-Shell Excitation Spectroscopy of the Peptide Bond: Comparison of the C 1s, N 1s, and O 1s Spectra of Glycine, Glycyl-Glycine, and Glycyl-Glycyl-Glycine

机译:肽键的壳内激发光谱:甘氨酸,甘氨酰-甘氨酸和甘氨酰-甘氨酸-甘氨酸的C 1s,N 1s和O 1s光谱的比较

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摘要

Oscillator strengths for C 1s, N 1s, and O 1s excitation spectra of gaseous glycine and the dipeptide, glycyl-glycine, have been derived from inner-shell electron energy-loss spectroscopy recorded under scattering conditions where electric dipole transitions dominate (2.5 keV residual energy, θ ≈ 2°). X-ray absorption spectra of solid glycine, glycyl-glycine, glycyl-glycyl-glycine, and a large protein, fibrinogen, were recorded in a scanning transmission X-ray microscope. The experimental spectra are assigned through interspecies comparisons and by comparison to ab initio computed spectra of various conformations of glycine and glycyl-glycine. Inner-shell excitation spectral features characteristic of the peptide bond are readily identified by comparison of the spectra of gas-phase glycine and glycyl-glycine. They include a clear broadening and a ~0.3 eV shift of the C 1s → π_(C=O)~* peak and introduction of a new pre-edge feature in the N 1s spectrum. These effects are due to 1s → π_(amide)~* transitions introduced with formation of the peptide bond. Similar changes occur in the spectra of the solids. The computational results support the interpretation of the experimental inner-shell spectra and provide insight into electron density distributions in the core excited states. Possible conformational dependence of the inner-shell excitation spectra was explored by computing the spectra of neutral glycine in its four most common conformations, and of glycyl-glycine in planar and two twisted conformations. A strong dependence of the computed C 1s, N 1s, and O 1s spectra of glycyl-glycine on the conformation about the amide linkage was confirmed by additional ab initio calculations of the conformational dependence of the spectra of formamide.
机译:气态甘氨酸和二肽甘氨酰甘氨酸的C 1s,N 1s和O 1s激发光谱的振子强度是由在电偶极跃迁占主导地位的散射条件下记录的内壳电子能量损失谱得出的(残留2.5 keV能量θ≈2°)。在扫描透射X射线显微镜中记录了固体甘氨酸,甘氨酰甘氨酸,甘氨酰甘氨酰甘氨酸和大蛋白纤维蛋白原的X射线吸收光谱。通过种间比较并通过与从头算出的甘氨酸和甘氨酰-甘氨酸的各种构象的光谱进行比较来分配实验光谱。通过比较气相甘氨酸和甘氨酰甘氨酸的光谱,可以容易地鉴定出肽键特征性的内壳激发光谱特征。它们包括C 1s→π_(C = O)〜*峰的明显展宽和〜0.3 eV位移,以及在N 1s谱中引入了新的前缘特征。这些效应是由于1s→π_(酰胺)〜*过渡带形成的肽键引入。固体光谱也发生类似的变化。计算结果支持对实验内壳光谱的解释,并提供对核激发态下电子密度分布的深入了解。通过计算中性甘氨酸在四个最常见构象中的甘氨酸和甘氨酰甘氨酸在平面和两个扭曲构象中的光谱,探索了内壳激发光谱的可能的构象依赖性。通过对甲酰胺光谱的构象依赖性进行额外的从头计算,证实了所计算的甘氨酰-甘氨酸的C 1s,N 1s和O 1s光谱对酰胺键构象的强烈依赖性。

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