Sterling Chemistry Laboratory, Yale University, P.O. Box 208107, New Haven, CT 06520, USA.
J Am Soc Mass Spectrom. 2011 Nov;22(11):1941-52. doi: 10.1007/s13361-011-0228-3. Epub 2011 Aug 27.
We report vibrational predissociation spectra of the four protonated dipeptides derived from glycine and sarcosine, GlyGlyH(+)•(H(2))(1,2), GlySarH(+)•(D(2))(2), SarGlyH(+)•(H(2))(2), and SarSarH(+)•(D(2))(2), generated in a cryogenic ion trap. Sharp bands were recovered by monitoring photoevaporation of the weakly bound H(2) (D(2)) molecules in a linear action regime throughout the 700-4200 cm(-1) range using a table-top laser system. The spectral patterns were analyzed in the context of the low energy structures obtained from electronic structure calculations. These results indicate that all four species are protonated on the N-terminus, and feature an intramolecular H-bond involving the amino group. The large blue-shift in the H-bonded N-H fundamental upon incorporation of a methyl group at the N-terminus indicates that this modification significantly lowers the strength of the intramolecular H-bond. Methylation at the amide nitrogen, on the other hand, induces a significant rotation (~110°) about the peptide backbone.
GlyGlyH(+)•(H(2))(1,2)、GlySarH(+)•(D(2))(2)、SarGlyH(+)•(H(2))(2)和 SarSarH(+)•(D(2))(2)。通过在 700-4200 cm(-1) 范围内使用台式激光系统在线性作用模式下监测弱结合 H(2) (D(2))分子的光蒸发,回收了尖锐的带。在电子结构计算得到的低能结构的背景下,对光谱模式进行了分析。这些结果表明,所有四种物质都是在 N 末端质子化的,并且具有涉及氨基的分子内氢键。在 N 末端引入甲基基团后,氢键的 N-H 基的大蓝移表明该修饰显著降低了分子内氢键的强度。另一方面,酰胺氮上的甲基化导致肽骨架的显著旋转(~110°)。