Department of Biological Sciences, University of Calgary , Calgary, Alberta T2N 1N4, Canada.
Metabolomics Research Centre, University of Calgary , Calgary, Alberta T2N 1N4, Canada.
J Proteome Res. 2017 Oct 6;16(10):3741-3752. doi: 10.1021/acs.jproteome.7b00430. Epub 2017 Sep 13.
The nonmetabolizable lysophosphatidylcholine (LysoPC) analogue edelfosine is the prototype of a class of compounds being investigated for their potential as selective chemotherapeutic agents. Edelfosine targets membranes, disturbing cellular homeostasis. Is not clear at this point how membrane alterations are communicated between intracellular compartments leading to growth inhibition and eventual cell death. In the present study, a combined metabolomics/lipidomics approach for the unbiased identification of metabolic pathways altered in yeast treated with sublethal concentrations of the LysoPC analogue was employed. Mass spectrometry of polar metabolites, fatty acids, and lipidomic profiling was used to study the effects of edelfosine on yeast metabolism. Amino acid and sugar metabolism, the Krebs cycle, and fatty acid profiles were most disrupted, with polar metabolites and short-medium chain fatty acid changes preceding long and very long-chain fatty acid variations. Initial increases in metabolites such as trehalose, proline, and γ-amino butyric acid with a concomitant decrease in metabolites of the Krebs cycle, citrate and fumarate, are interpreted as a cellular attempt to offset oxidative stress in response to mitochondrial dysfunction induced by the treatment. Notably, alanine, inositol, and myristoleic acid showed a steady increase during the period analyzed (2, 4, and 6 h after treatment). Of importance was the finding that edelfosine induced significant alterations in neutral glycerolipid metabolism resulting in a significant increase in the signaling lipid diacylglycerol.
非代谢型溶血磷脂酰胆碱(LysoPC)类似物埃替福司(edelfosine)是一类化合物的原型,这些化合物因其作为选择性化学治疗剂的潜力而受到研究。埃替福司靶向膜,扰乱细胞内稳态。目前尚不清楚细胞膜的改变如何在细胞内隔室之间传递,导致生长抑制和最终细胞死亡。在本研究中,采用了一种组合代谢组学/脂质组学方法,用于在酵母中鉴定亚致死浓度的 LysoPC 类似物处理后改变的代谢途径。采用极性代谢物、脂肪酸和脂质组学分析的质谱法研究了埃替福司对酵母代谢的影响。氨基酸和糖代谢、三羧酸循环和脂肪酸谱受到的干扰最大,极性代谢物和短-中链脂肪酸的变化先于长链和超长链脂肪酸的变化。三磷酸蔗糖、脯氨酸和γ-氨基丁酸等代谢物的初始增加,同时三羧酸循环的代谢物柠檬酸和富马酸减少,被解释为细胞试图抵消线粒体功能障碍引起的氧化应激。值得注意的是,丙氨酸、肌醇和豆蔻酸在分析期间(处理后 2、4 和 6 小时)呈稳定增加。重要的是发现,埃替福司诱导中性甘油脂代谢发生显著改变,导致信号脂质二酰基甘油显著增加。