Fridriksson E K, Shipkova P A, Sheets E D, Holowka D, Baird B, McLafferty F W
Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York 14853-1301, USA.
Biochemistry. 1999 Jun 22;38(25):8056-63. doi: 10.1021/bi9828324.
We recently showed that ligand-mediated cross-linking of FcepsilonRI, the high-affinity receptor for immunoglobulin E, on RBL-2H3 mast cells results in its co-isolation with detergent-resistant membranes (DRM) and its consequent tyrosine phosphorylation by the co-localized tyrosine kinase Lyn that is a critical early event in signaling by this receptor [Field et al. (1997) J. Biol. Chem. 272, 4276-4280]. As part of efforts to determine the structural bases for these interactions, we examined the phospholipid composition of DRM vesicles isolated from RBL-2H3 cells under conditions that preserve FcepsilonRI association. We used positive and negative mode electrospray Fourier transform ion cyclotron resonance mass spectrometry to compare quantitatively the phospholipid composition of isolated DRM to that of total cell lipids and to a plasma membrane preparation. From these analyses, over 90 different phospholipid species were spectrally resolved and unambiguously identified; more than two-thirds of these were determined with a precision of +/-0.5% (absolute) or less. Quantitative characterization of lipid profiles shows that isolated DRM are substantially enriched in sphingomyelin and in glycerophospholipids with a higher degree of saturation as compared to total cellular lipids. Plasma membrane vesicles isolated from RBL-2H3 cells by chemically induced blebbing exhibit a degree of phospholipid saturation that is intermediate between DRM and total cellular lipids, and significant differences in the headgroup distribution between DRM and plasma membranes vesicles are observed. DRM from cells with cross-linked FcepsilonRI exhibit a larger ratio of polyunsaturated to saturated and monounsaturated phospholipids than those from unstimulated cells. Our results support and strengthen results from previous studies suggesting that DRM have a lipid composition that promotes liquid-ordered structure. Furthermore, they demonstrate the potential of mass spectrometry for examining the role of membrane structure in receptor signaling and other cellular processes.
我们最近发现,免疫球蛋白E的高亲和力受体FcepsilonRI在RBL-2H3肥大细胞上通过配体介导的交联作用,会导致其与抗去污剂膜(DRM)共同分离,并随后被共定位的酪氨酸激酶Lyn磷酸化,这是该受体信号传导中的一个关键早期事件[菲尔德等人(1997年)《生物化学杂志》272卷,4276 - 4280页]。作为确定这些相互作用结构基础工作的一部分,我们在保留FcepsilonRI结合的条件下,研究了从RBL-2H3细胞中分离出的DRM囊泡的磷脂组成。我们使用正模式和负模式电喷雾傅里叶变换离子回旋共振质谱法定量比较了分离出的DRM与总细胞脂质以及质膜制剂的磷脂组成。通过这些分析,光谱解析并明确鉴定出了90多种不同的磷脂种类;其中超过三分之二的磷脂种类测定精度达到或低于±0.5%(绝对误差)。脂质谱的定量表征表明,与总细胞脂质相比,分离出的DRM在鞘磷脂和饱和度更高的甘油磷脂中显著富集。通过化学诱导起泡从RBL-2H3细胞中分离出的质膜囊泡的磷脂饱和度介于DRM和总细胞脂质之间,并且观察到DRM与质膜囊泡在头部基团分布上存在显著差异。与未刺激细胞相比,FcepsilonRI交联的细胞中的DRM显示出多不饱和磷脂与饱和及单不饱和磷脂的比例更大。我们的结果支持并强化了先前研究的结果,表明DRM具有促进液晶态结构的脂质组成。此外,它们证明了质谱法在研究膜结构在受体信号传导和其他细胞过程中的作用方面的潜力。