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Mass spectrometry determination of endonuclear phospholipid composition and dynamics.

机译:质谱测定核内磷脂的组成和动力学。

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Mammalian cell lipid analyses using tandem electrospray ionization mass spectrometry, in conjunction with stable isotope labeling, permit unparalleled access to membrane phospholipid molecular species compositions and turnover. Lipidomic data from isolable compartments of lipid second messenger generation, such as membrane-free nuclei, can provide dynamic insights into the topology of phospholipid turnover. For example, ESI-MS/MS precursor scans of characteristic phosphocholine m/z 184(+) fragments reveal a highly saturated endonuclear phosphatidylcholine pool with homeostatic maintenance properties. A spatially distinct CDPcholine pathway yields, within minutes of choline-d(9) labeling, unsaturated endonuclear phosphatidylcholines progressively remodeled to more saturated species evidenced by tracking the deuteriated headgroup through precursor scans of phosphocholine-d(9) (m/z 193(+) fragment). Among the other endonuclear phospholipids, diacyl phosphatidylethanolamines (neutral loss of m/z 141(+)) are also highly saturated compared with those of whole cell whereas, phophatidylinositols (precursor scans of m/z 241(-) fragment) are essentially identical in nuclei and whole cells. Moreover, the pattern of myo-inositol-d(6) acquisition into endonuclear phosphatidylinositol (precursor scans of m/z 247(-) fragment) is inconsistent with compartment-specific synthesis. Endonuclear sphingomyelins (seen in precursor scans of m/z 184(+) and confirmed from precursor scans of m/z 168(-) fragments) are enriched but similar in composition to whole cell species whereas endonuclear phosphatidylserines (neutral loss of m/z 87(-)) are more saturated than their whole cell counterparts. The focus of described methodologies emphasize their value in probing the compositions and dynamics of endonuclear phospholipids, but in principle may be extended to exploration of other isolable compartments including ER or plasma membranes.
机译:使用串联电喷雾电离质谱技术结合稳定的同位素标记进行哺乳动物细胞脂质分析,可以无与伦比地获得膜磷脂分子种类的组成和更新率。来自脂质第二信使产生的可分离区室的脂质数据,例如无膜核,可以提供对磷脂周转结构的动态见解。例如,特征性磷酸胆碱m / z 184(+)片段的ESI-MS / MS前驱物扫描显示具有稳态维持特性的高度饱和的核内磷脂酰胆碱池。在胆碱d(9)标记的几分钟内,空间上独特的CDPcholine途径产生的不饱和核内磷脂酰胆碱会逐步重塑为更饱和的物种,这是通过磷胆碱d(9)的前体扫描追踪氘代头基所证明的(m / z 193(+ )片段)。在其他核内磷脂中,与整个细胞相比,二酰基磷脂酰乙醇胺(m / z 141(+)的中性损失)也高度饱和,而磷脂酰肌醇(m / z 241(-)片段的前体扫描)在本质上是相同的核和整个细胞。此外,肌醇-d(6)采集到核内磷脂酰肌醇(m / z 247(-)片段的前体扫描)的模式与特定于隔室的合成不一致。核内鞘磷脂(在m / z 184(+)的前体扫描中见到并从m / z 168(-)片段的前体扫描中确认)富集,但其组成与全细胞物种相似,而核内磷脂酰丝氨酸(m / z的中性丢失) 87(-))比其整个细胞对应物更饱和。所描述方法的重点强调了它们在探测核内磷脂的组成和动力学方面的价值,但原则上可以扩展到探索其他可分离的区室,包括ER或质膜。

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