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Cholesterol and ergosterol superlattices in three-component liquid crystalline lipid bilayers as revealed by dehydroergosterol fluorescence.

机译:脱氢麦角固醇荧光显示三组分液晶脂质双层中的胆固醇和麦角固醇超晶格。

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摘要

We have examined the fractional sterol concentration dependence of dehydroergosterol (DHE) fluorescence in DHE/cholesterol/dimyristoyl-L-alpha-phosphatidylcholine (DMPC), DHE/ergosterol/DMPC and DHE/cholesterol/dipalmitoyl-L-alpha-phosphatidylcholine (DPPC) liquid-crystalline bilayers. Fluorescence intensity and lifetime exhibit local minima (dips) whenever the total sterol mole fraction, irrespective of the DHE content, is near the critical mole fractions predicted for sterols being regularly distributed in hexagonal superlattices. This result provides evidence that all three of these naturally occurring sterols (e.g., cholesterol, ergosterol, and DHE) can be regularly distributed in the membrane and that the bulky tetracyclic ring of the sterols is the cause of regular distribution. Moreover, at the critical sterol mole fractions, the steady-state anisotropy of DHE fluorescence and the calculated rotational relaxation times exhibit distinct peaks, suggesting that membrane free volume reaches a local minimum at critical sterol mole fractions. This, combined with the well-known sterol condensing effect on lipid acyl chains, provides a new understanding of how variations in membrane sterol content change membrane free volume. In addition to the fluorescence dips/peaks corresponding to hexagonal superlattices, we have observed intermediate fluorescence dips/peaks at concentrations predicted by the centered rectangular superlattice model. However, the 22.2 mol% dip for centered rectangular superlattices in DHE/ergosterol/DMPC mixtures becomes diminished after long incubation (4 weeks), whereas on the same time frame the 22.2 mol% dip in DHE/cholesterol/DMPC mixtures remains discernible, suggesting that although all three of these sterols can be regularly distributed, subtle differences in sterol structure cause changes in lateral sterol organization in the membrane.
机译:我们已经检查了DHE /胆固醇/二肉豆蔻酰基-L-α-磷脂酰胆碱(DMPC),DHE /麦角甾醇/ DMPC和DHE /胆固醇/二棕榈酰-L-α-磷脂酰胆碱(DPPC)中的脱氢麦角固醇(DHE)荧光的分数固醇浓度依赖性液晶双层。每当总固醇摩尔分数(不考虑DHE含量)接近于预测的固醇以六方超晶格规则分布的临界摩尔分数时,荧光强度和寿命就会显示出局部最小值(浸出)。该结果提供了所有这些天然存在的固醇(例如,胆固醇,麦角固醇和DHE)的所有三种均可以规则地分布在膜中的证据,并且固醇的大四环是规则分布的原因。此外,在临界固醇摩尔分数下,DHE荧光的稳态各向异性和计算得出的旋转弛豫时间表现出明显的峰值,这表明膜的自由体积在临界固醇摩尔分数下达到了局部最小值。这与众所周知的对脂质酰基链的固醇缩合作用相结合,提供了对膜固醇含量变化如何改变膜自由体积的新认识。除了对应于六边形超晶格的荧光下降/峰值,我们还观察到了居中矩形超晶格模型预测的浓度下的中间荧光下降/峰值。但是,经过长时间孵育(4周)后,DHE /麦角甾醇/ DMPC混合物中居中的矩形超晶格的22.2 mol%下降变小,而在同一时间范围内,DHE /胆固醇/ DMPC混合物中22.2 mol%的下降仍然可辨别。尽管这三种固醇都可以有规律地分布,但固醇结构的细微差异会引起膜中侧固醇结构的变化。

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