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二维电子自旋共振研究受体交联时质膜囊泡的异质性和结构域变化。

2D-ELDOR study of heterogeneity and domain structure changes in plasma membrane vesicles upon cross-linking of receptors.

机构信息

Baker Laboratory of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853-1301, United States.

出版信息

J Phys Chem B. 2011 Sep 8;115(35):10462-9. doi: 10.1021/jp2016243. Epub 2011 Aug 16.

Abstract

2D electron-electron double resonance (2D-ELDOR) with the "full Sc-" method of analysis is applied to the study of plasma membrane vesicles. Membrane structural changes upon antigen cross-linking of IgE receptors (IgE-FcεRI) in plasma membrane vesicles (PMVs) isolated from RBL-2H3 mast cells are investigated, for the first time, by means of these 2D-ELDOR techniques. Spectra of 1-palmitoyl-2-(16-doxyl stearoyl) phosphatidylcholine (16-PC) from PMVs before and after this stimulation at several temperatures are reported. The results demonstrate a coexistence of liquid-ordered (L(o)) and liquid-disordered (L(d)) components. We find that upon cross-linking, the membrane environment is remodeled to become more disordered, as shown by a moderate increase in the population of the L(d) component. This change in the relative amount of the L(o) versus L(d) components upon cross-linking is consistent with a model wherein the IgE receptors, which when clustered by antigen to cause cell stimulation, lead to more disordered lipids, and their dynamic and structural properties are slightly altered. This study demonstrates that 2D-ELDOR, analyzed by the full Sc- method, is a powerful approach for capturing the molecular dynamics in biological membranes. This is a particular case showing how 2D-ELDOR can be applied to study physical processes in complex systems that yield subtle changes.

摘要

2D 电子-电子双共振(2D-ELDOR)与“全 Sc-”分析方法应用于质膜囊泡的研究。首次应用这些 2D-ELDOR 技术研究了从 RBL-2H3 肥大细胞中分离的质膜囊泡(PMVs)中 IgE 受体(IgE-FcεRI)的抗原交联导致的膜结构变化。报告了在几个温度下刺激前后 PMVs 中 1-棕榈酰-2-(16-二氧代硬脂酰基)磷脂酰胆碱(16-PC)的谱。结果表明存在有序液体(L(o))和无序液体(L(d))成分共存。我们发现,交联后,膜环境被重塑,变得更加无序,这表明 L(d)成分的比例略有增加。这种交联时 L(o)与 L(d)成分相对量的变化与模型一致,其中 IgE 受体在抗原的作用下聚集导致细胞刺激,导致更多无序的脂质,其动态和结构特性略有改变。本研究表明,通过全 Sc-方法分析的 2D-ELDOR 是捕捉生物膜中分子动力学的有力方法。这是一个特殊的例子,说明了 2D-ELDOR 如何应用于研究产生微妙变化的复杂系统中的物理过程。

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