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首页> 外文期刊>Journal of cell biology >Electrospray Ionization Tandem Mass Spectrometry (Esi-Ms/Ms) Analysis of the Lipid Molecular Species Composition of Yeast Subcellular Membranes Reveals Acyl Chain-Based Sorting/Remodeling of Distinct Molecular Species En Route to the Plasma Membrane
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Electrospray Ionization Tandem Mass Spectrometry (Esi-Ms/Ms) Analysis of the Lipid Molecular Species Composition of Yeast Subcellular Membranes Reveals Acyl Chain-Based Sorting/Remodeling of Distinct Molecular Species En Route to the Plasma Membrane

机译:酵母亚细胞膜脂质分子物种组成的电喷雾电离串联质谱分析(Esi-Ms / Ms)显示基于酰基链的分选/重塑不同分子物种进入质膜的过程。

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Nano-electrospray ionization tandem mass spectrometry (nano-ESI-MS/MS) was employed to determine qualitative differences in the lipid molecular species composition of a comprehensive set of organellar membranes, isolated from a single culture of Saccharomyces cerevisiae cells. Remarkable differences in the acyl chain composition of biosynthetically related phospholipid classes were observed. Acyl chain saturation was lowest in phosphatidylcholine (15.4%) and phosphatidylethanolamine (PE; 16.2%), followed by phosphatidylserine (PS; 29.4%), and highest in phosphatidylinositol (53.1%). The lipid molecular species profiles of the various membranes were generally similar, with a deviation from a calculated average profile of ~± 20%. Nevertheless, clear distinctions between the molecular species profiles of different membranes were observed, suggesting that lipid sorting mechanisms are operating at the level of individual molecular species to maintain the specific lipid composition of a given membrane. Most notably, the plasma membrane is enriched in saturated species of PS and PE. The nature of the sorting mechanism that determines the lipid composition of the plasma membrane was investigated further. The accumulation of monounsaturated species of PS at the expense of diunsaturated species in the plasma membrane of wild-type cells was reversed in elo3 Δ mutant cells, which synthesize C24 fatty acid-substituted sphingolipids instead of the normal C26 fatty acid-substituted species. This observation suggests that acyl chain-based sorting and/or remodeling mechanisms are operating to maintain the specific lipid molecular species composition of the yeast plasma membrane.
机译:纳米电喷雾电离串联质谱法(nano-ESI-MS / MS)用于确定从啤酒酵母单细胞培养物中分离得到的一组完整的细胞器膜脂质分子种类组成的质量差异。在生物合成相关磷脂类别的酰基链组成上观察到显着差异。磷脂酰胆碱(15.4%)和磷脂酰乙醇胺(PE; 16.2%)中的酰基链饱和度最低,其次是磷脂酰丝氨酸(PS; 29.4%),磷脂酰肌醇中最高(53.1%)。各种膜的脂质分子种类概况大致相似,与计算得出的平均概况相差约±20%。然而,在不同膜的分子种类分布之间观察到明显的区别,这表明脂质分选机制在单个分子种类的水平上起作用,以维持给定膜的特定脂质组成。最值得注意的是,质膜富含PS和PE的饱和物质。进一步研究了确定质膜脂质组成的分选机制的性质。在elo3Δ突变细胞中,野生型细胞质膜中以单不饱和物种为代价的单不饱和物种的积累被逆转,elo3Δ突变细胞合成了C24脂肪酸取代的鞘脂而不是正常的C26脂肪酸取代的物种。该观察结果表明,基于酰基链的分选和/或重塑机制起作用以维持酵母质膜的特定脂质分子种类组成。

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