Department of Chemistry and Biochemistry, The University of North Carolina at Greensboro, Greensboro, NC, 27412, USA.
UNCG Center for Translational Biomedical Research, North Carolina Research Campus, Kannapolis, NC, 28081, USA.
J Am Soc Mass Spectrom. 2017 Nov;28(11):2330-2343. doi: 10.1007/s13361-017-1772-2. Epub 2017 Aug 22.
Glycosphingolipids are essential biomolecules widely distributed across biological kingdoms yet remain relatively underexplored owing to both compositional and structural complexity. While the glycan head group has been the subject of most studies, there is paucity of reports on the lipid moiety, particularly the location of unsaturation. In this paper, ozone-induced dissociation mass spectrometry (OzID-MS) implemented in a traveling wave-based quadrupole time-of-flight (Q-ToF) mass spectrometer was applied to study unsaturated glycosphingolipids using shotgun approach. Resulting high resolution mass spectra facilitated the unambiguous identification of diagnostic OzID product ions. Using [M+Na] adducts of authentic standards, we observed that the long chain base and fatty acyl unsaturation had distinct reactivity with ozone. The reactivity of unsaturation in the fatty acyl chain was about 8-fold higher than that in the long chain base, which enables their straightforward differentiation. Influence of the head group, fatty acyl hydroxylation, and length of fatty acyl chain on the oxidative cleavage of double bonds was also observed. Application of this technique to bovine brain galactocerebrosides revealed co-isolated isobaric and regioisomeric species, which otherwise would be incompletely identified using contemporary collision-induced dissociation (CID) alone. These results highlight the potential of OzID-MS in glycosphingolipids research, which not only provides complementary structural information to existing CID technique but also facilitates de novo structural determination of these complex biomolecules. Graphical Abstract ᅟ.
糖脂是广泛分布于生物界的重要生物分子,但由于其组成和结构的复杂性,对其研究相对较少。虽然糖基头部基团是大多数研究的主题,但关于脂质部分,特别是不饱和部分的位置,报道很少。在本文中,采用基于行波的四极杆飞行时间(Q-ToF)质谱仪中的臭氧诱导解离质谱(OzID-MS),采用鸟枪法研究不饱和糖脂。得到的高分辨质谱有助于明确鉴定诊断性 OzID 产物离子。使用真实标准品的[M+Na]加合物,我们观察到长链碱基和脂肪酸不饱和与臭氧具有不同的反应性。脂肪酸链中不饱和的反应性比长链碱基高约 8 倍,这使其能够直接区分。还观察到头基团、脂肪酸羟化和脂肪酸链长度对双键氧化裂解的影响。该技术在牛脑半乳糖脑苷脂中的应用揭示了共分离的等质量和区域异构体,否则仅使用现代碰撞诱导解离(CID)技术将无法完全鉴定这些异构体。这些结果突出了 OzID-MS 在糖脂研究中的潜力,它不仅为现有的 CID 技术提供了补充的结构信息,而且还促进了这些复杂生物分子的从头结构确定。