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使用 pTIRFM 测量与神经酰胺介导的膜重排相关的序参数变化。

Changes in order parameters associated with ceramide-mediated membrane reorganization measured using pTIRFM.

机构信息

Measurement Science and Standards, National Research Council of Canada , Ottawa, Ontario K1A 0R6, Canada.

出版信息

Langmuir. 2013 Dec 23;29(51):15907-18. doi: 10.1021/la403585v. Epub 2013 Dec 13.

Abstract

The enzymatic generation of ceramide has significant effects on the biophysical properties of lipid bilayers and can lead to the extensive reorganization of cell membranes. We have synthesized and characterized a headgroup-labeled fluorescent lipid probe (NBD-ceramide, NBD-Cer) and demonstrated that it can be used for polarized total internal reflection fluorescence microscopy experiments to probe changes in membrane order that result from ceramide incorporation. NBD-Cer measures significantly higher order parameters for the liquid-ordered (Lo) domains ([P2] = 0.40 ± 0.03) than for the liquid-disordered phase (Ld, fluid, [P2] = 0.22 ± 0.02) of phase-separated bilayers prepared from egg sphingomyelin, dioleolyphosphatidylcholine, and cholesterol mixtures. The probe also responds to changes in packing induced by the direct incorporation of ceramide or the variation in the ionic strength of the aqueous medium. Order parameter maps obtained after enzyme treatment of bilayers with coexisting Lo and Ld phases show two distinct types of behavior. In regions of high enzyme activity, the initial Lo/Ld domains are replaced by large, dark features that have high membrane order corroborating previous hypotheses that these are ceramide-enriched regions of the membrane. In areas of low enzyme activity, the size and shape of the Lo domains are conserved, but there is an increase in the order parameter for the initial Ld phase ([P2] = 0.30 ± 0.01). This is attributed to the incorporation of ceramide in the Lo domains with the concomitant expulsion of cholesterol into the surrounding fluid phase, increasing its order parameter.

摘要

酶促生成神经酰胺对脂质双层的生物物理性质有显著影响,并可导致细胞膜的广泛重排。我们合成并表征了一种带有头基标记的荧光脂质探针(NBD-神经酰胺,NBD-Cer),并证明它可用于偏振全内反射荧光显微镜实验,以探测神经酰胺掺入导致的膜有序性变化。NBD-Cer 对从鸡蛋鞘磷脂、二油酰基磷脂酰胆碱和胆固醇混合物制备的相分离双层的有序(Lo)域的有序参数[P2](= 0.40 ± 0.03)的测量值显著高于无序相(Ld,流体,[P2] = 0.22 ± 0.02)。探针还响应由神经酰胺直接掺入或水介质离子强度变化引起的包装变化。在用共存的 Lo 和 Ld 相处理双层后获得的有序参数图显示出两种不同的行为。在酶活性高的区域,初始的 Lo/Ld 域被大的、暗的特征所取代,这些特征具有高的膜有序性,这与先前的假设一致,即这些是膜中富含神经酰胺的区域。在酶活性低的区域,Lo 域的大小和形状得以保留,但初始 Ld 相的有序参数增加([P2] = 0.30 ± 0.01)。这归因于神经酰胺在 Lo 域中的掺入,同时胆固醇被逐出到周围的流体相,增加了其有序参数。

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