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Bilayer nanotubes and helical ribbons formed by hydrated galactosylceramides: acyl chain and headgroup effects.

机译:水合的半乳糖神经酰胺形成的双层纳米管和螺旋带:酰基链和头基效应。

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摘要

The molecular basis of bilayer tubule formation in hydrated galactosylceramide (GalCer) dispersions has been investigated by synthesizing different chain-pure GalCers and examining their aqueous mesomorphic phase structure by freeze fracture and negative-stain electron microscopy. Thermotropic characterization of the GalCer species by differential scanning calorimetry provided supplementary information that verified the phase state under which morphological observations were carried out. Under aqueous conditions and at room temperature, N-24:1 delta 15(cis) GalSph, the predominant monounsaturated, nonhydroxy acyl species of bovine brain GalCer (NFA-GalCer), formed cylindrical mesomorphic self-assemblies consisting almost exclusively of "nanotubes," i.e., lipid bilayer tubules of relatively uniform length and diameter (length, 250-400 nm; diameter, 25-30 nm). In contrast, N-24:0 GalSph, the major saturated, nonhydroxy acyl species of bovine brain GalCer, displayed no tendency to form these relatively small "nanotubes." Rather, N-24:0 GalSph formed larger, variable-length ribbon-like structures (length, 5,000-10,000 nm) that often appeared to undulate and, occasionally, appeared to be helically twisted. Interestingly, bovine brain GalCer, which contains high levels of the N-24:1 delta 15(cis) and N-24:0 species as well as 2-hydroxy acyl chains, formed multilamellar liposomes of variable size and showed little tendency to form cylindrical structures. This result suggested that changes to the polar interface/headgroup region imparted by the 2-hydroxy acyl species strongly influenced bilayer tubule and cylinder formation in GalCer. To define this influence more clearly, other sphingoid-based and glycerol-based lipids were investigated. Morphological characterization of N-24:1 delta 15(cis) sphingosylphosphorylcholine (24:1 SM) revealed no evidence of bilayer cylinder or tubule formation. Similar results were obtained with aqueous dispersions of 1-palmitoyl-2-nervonoyl phosphatidylcholine (16:0, 24:1 PC). Hence, the bulkier, more hydrated, zwitterionic phosphocholine headgroup inhibited the formation of bilayer nanotubes and cylinders under physiological saline conditions.
机译:通过合成不同链纯的GalCer并通过冷冻断裂和负染色电子显微镜检查其水的介晶相结构,研究了水合半乳糖神经酰胺(GalCer)分散液中双层小管形成的分子基础。通过差示扫描量热法对GalCer物种进行热致性表征提供了补充信息,这些信息验证了进行形态观察的相态。在水性条件和室温下,牛脑GalCer(NFA-GalCer)的主要单不饱和非羟基酰基N-24:1 delta 15(cis)GalSph形成了圆柱形的介晶自组装体,几乎只由“纳米管, ”,即长度和直径(长度250-400 nm;直径25-30 nm)相对均匀的脂质双层小管。相反,牛脑GalCer的主要饱和非羟基酰基N-24:0 GalSph没有显示出形成这些相对较小的“纳米管”的趋势。相反,N-24:0 GalSph形成了较大的,可变长度的带状结构(长度为5,000-10,000 nm),通常看起来呈波状起伏,偶尔看起来呈螺旋状扭曲。有趣的是,牛脑GalCer含有高水平的N-24:1δ15(顺式)和N-24:0物种以及2-羟基酰基链,形成大小可变的多层脂质体,几乎没有形成趋势圆柱结构。该结果表明,由2-羟基酰基物质赋予的极性界面/头基区域的变化强烈地影响了GalCer中的双层小管和圆柱的形成。为了更清楚地定义这种影响,还研究了其他基于鞘氨醇和甘油的脂质。 N-24:1δ15(顺式)鞘氨酰磷酸胆碱(24:1 SM)的形态学特征表明没有发现双层圆柱或小管形成的迹象。用1-棕榈酰基-2-神经酰基磷脂酰胆碱(16:0,24:1 PC)的水分散液获得了相似的结果。因此,在生理盐水条件下,更大的,更水合的两性离子磷酸胆碱头基团抑制了双层纳米管和圆柱的形成。

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