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Peptide Bond Ultraviolet Absorption Enables Vibrational Cold-Ion Spectroscopy of Nonaromatic Peptides

机译:肽键紫外线吸收使得无芳族肽的振动冷离子光谱

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Peptide-bond VUV absorption is inherent to all proteins and peptides. Although widely exploited in top-down proteomics for photodissociation, this absorption has never been spectroscopically characterized in the gas phase. We have measured VUV/UV photofragmentation spectrum of a single peptide bond in a cryogenically cold protonated dipeptide. Although the spectrum appears to be very broadband and structureless, vibrational pre-excitation of this and even larger cold peptides significantly increases the UV dissociation yield for some of their photofragments. We use this effect to extend the technique of IR–UV photofragmentation vibrational spectroscopy, developed for aromatic peptides, to nonaromatic ones and demonstrate measurements of conformation-specific and nonspecific IR spectra for di- to hexa-peptides.
机译:肽 - 键VUV吸收是所有蛋白质和肽所固有的。 虽然广泛利用在自上而下的蛋白质组学中用于光度解放,但这种吸收从未在气相中的光谱表征。 我们在低温冷质原子二肽中测量了单肽键的VUV / UV照相谱。 虽然光谱似乎是非常宽带和结构的,但是这种振动预激发和甚至更大的冷肽显着增加了它们的一些光原块的UV解离产率。 我们使用这种效果来扩展IR-UV照相振荡振动谱的技术,为芳族肽开发,对非芳族肽开发,并证明了用于二对己肽的锥形特异性和非特异性IR光谱的测量。

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