Ranković M Lj, Canon F, Nahon L, Giuliani A, Milosavljević A R
Institute of Physics Belgrade, University of Belgrade, Pregrevica 118, 11080 Belgrade, Serbia.
INRA, UMR1324 Centre des Sciences du Goût et de l'Alimentation, F-21000 Dijon, France.
J Chem Phys. 2015 Dec 28;143(24):244311. doi: 10.1063/1.4939080.
We have studied the Vacuum Ultraviolet (VUV) photodissociation of gas-phase protonated leucine-enkephalin peptide ion in the 5.7 to 14 eV photon energy range by coupling a linear quadrupole ion trap with a synchrotron radiation source. We report VUV activation tandem mass spectra at 6.7, 8.4, and 12.8 eV photon energies and photodissociation yields for a number of selected fragments. The obtained results provide insight into both near VUV radiation damage and electronic properties of a model peptide. We could distinguish several absorption bands and assign them to particular electronic transitions, according to previous theoretical studies. The photodissociation yields appear to be very different for the various observed fragmentation channels, depending on both the types of fragments and their position along the peptide backbone. The present results are discussed in light of recent gas-phase spectroscopic data on peptides.
我们通过将线性四极杆离子阱与同步辐射源相结合,研究了气相质子化亮氨酸脑啡肽肽离子在5.7至14电子伏特光子能量范围内的真空紫外(VUV)光解离。我们报告了在6.7、8.4和12.8电子伏特光子能量下的VUV活化串联质谱以及一些选定碎片的光解离产率。所得结果为深入了解近VUV辐射损伤和模型肽的电子性质提供了依据。根据先前的理论研究,我们能够区分几个吸收带并将它们归因于特定的电子跃迁。对于各种观察到的碎裂通道,光解离产率似乎有很大差异,这取决于碎片的类型及其在肽主链上的位置。本文根据最近关于肽的气相光谱数据对目前的结果进行了讨论。