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Far-Off Resonance Multiwavelength Raman Spectroscopy Probing Amide Bands of Amyloid-β-(37–42) Peptide

机译:淀粉样蛋白-β-(37-42)肽的FAR-OFF共振多波长拉曼光谱探测酰胺带

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Several neurodegenerative diseases, like Alzheimer’s and Parkinson’s are linked with protein aggregation into amyloid fibrils. Conformational changes of native protein into the β-sheet structure are associated with a significant change in the vibrational spectrum. This is especially true for amide bands which are inherently sensitive to the secondary structure of a protein. Raman amide bands are greatly intensified under resonance conditions, in the UV spectral range, allowing for the selective probing of the peptide backbone. In this work, we examine parallel β-sheet forming GGVVIA, the C-terminus segment of amyloid-β peptide, using UV–Vis, FTIR, and multiwavelength Raman spectroscopy. We find that amide bands are enhanced far from the expected UV range, i.e., at 442 nm. A reasonable two-fold relative intensity increase is observed for amide II mode (normalized according to the δCH2/δCH3 vibration) while comparing 442 and 633 nm excitations; an increase in relative intensity of other amide bands was also visible. The observed relative intensification of amide II, amide S, and amide III modes in the Raman spectrum recorded at 442 nm comparing with longer wavelength (633/785/830 nm) excited spectra allows unambiguous identification of amide bands in the complex Raman spectra of peptides and proteins containing the β-sheet structure.
机译:像阿尔茨海默氏菌和帕金森一样的几种神经变性疾病与蛋白质聚集相连成淀粉样蛋白原纤维。天然蛋白质进入β-片状结构的构象变化与振动谱的显着变化相关。对于固有地对蛋白质的二级结构敏感的酰胺条带尤其如此。拉曼酰胺带在紫外光谱范围内,在共振条件下大大加剧,从而允许选择性探测肽骨架。在这项工作中,使用UV-VI,FTIR和多波长拉曼光谱,检查平行β-片形成GGVVIA,淀粉样蛋白-β肽的C末端区段。我们发现酰胺带的增强远离预期的UV范围,即442 nm。在比较442和633nm激励的同时,观察到酰胺II模式(根据ΔCH2/ΔCH3振动归一化的合理的双倍相对强度增加;也可见其他酰胺带的相对强度的增加。观察到在与较长波长(633/785/830nm)激发光谱相比,在442nm的拉曼光谱中观察到的酰胺II,酰胺S和酰胺III模式的相对强化允许肽复合拉曼光谱中的酰胺带明显鉴定和含有β-片状结构的蛋白质。

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