Department of Condensed Matter, National Institute for Research and Development in Electrochemistry and Condensed Matter, 300224 Timisoara, Romania.
Faculty of Physics, West University of Timisoara, 300223 Timisoara, Romania.
Molecules. 2022 Jun 23;27(13):4056. doi: 10.3390/molecules27134056.
In this study, we developed a high-resolution tandem mass spectrometry (HR MS) approach to assess presumed changes in gangliosidome of a human hippocampus affected by temporal lobe epilepsy (TLE) in comparison with a normal hippocampus. Gangliosides, membrane glycolipids, are particularly diverse and abundant in the human brain, and participate in ion transport and modulation of neuronal excitability. Changes in structural ganglioside pattern potentially linked to TLE molecular pathogenesis have not been explored in detail. Aiming to characterize TLE-specific gangliosidome, we analyzed the native gangliosides purified from a human hippocampal tissue sample affected by TLE and a control hippocampus using HR MS. Marked differences of ganglioside expression were shown in TLE vs. control, particularly with respect to the sialylation degree of components, discovered as a characteristic feature of TLE. Another major finding is the occurrence of tetrasialofucogangliosides in TLE and species modified by either -acetylation or CHCOO. Structural analysis by higher-energy collisional dissociation (HCD) MS/MS gave rise to fragmentation patterns implying that the GQ1b (d18:1/18:0) isomer is specifically associated with TLE. Further investigation in a larger sample is needed in order to confirm the discovery of ganglioside structures specifically expressed in human TLE and to provide information on the probable role of gangliosides in the molecular events underlying seizures.
在这项研究中,我们开发了一种高分辨率串联质谱(HR MS)方法,以评估与正常海马体相比受颞叶癫痫(TLE)影响的人海马体中神经节苷脂组的假定变化。神经节苷脂是膜糖脂,在人类大脑中特别多样化且丰富,参与离子转运和神经元兴奋性的调节。与 TLE 分子发病机制相关的结构神经节苷脂模式的变化尚未详细探索。为了表征 TLE 特异性神经节苷脂组,我们使用 HR MS 分析了来自受 TLE 影响的人海马组织样本和对照海马体中纯化的天然神经节苷脂。与对照相比,TLE 中显示出神经节苷脂表达的明显差异,特别是与成分的唾液酸化程度有关,这被发现是 TLE 的一个特征。另一个主要发现是在 TLE 中出现了四唾液酸化岩藻糖神经节苷脂,以及通过 -乙酰化或 CHCOO 修饰的物种。通过更高能量碰撞解离(HCD)MS/MS 的结构分析产生了暗示 GQ1b(d18:1/18:0)异构体与 TLE 特异性相关的碎裂模式。需要在更大的样本中进一步研究,以确认在人类 TLE 中特异性表达的神经节苷脂结构的发现,并提供有关神经节苷脂在癫痫发作下潜在分子事件中可能作用的信息。