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The dependence of lipid asymmetry upon phosphatidylcholine acyl chain structure

机译:脂质不对称性对磷脂酰胆碱酰基链结构的依赖性

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摘要

Lipid asymmetry, the difference in inner and outer leaflet lipid composition, is an important feature of biomembranes. By utilizing our recently developed MβCD-catalyzed exchange method, the effect of lipid acyl chain structure upon the ability to form asymmetric membranes was investigated. Using this approach, SM was efficiently introduced into the outer leaflet of vesicles containing various phosphatidylcholines (PC), but whether the resulting vesicles were asymmetric (SM outside/PC inside) depended upon PC acyl chain structure. Vesicles exhibited asymmetry using PC with two monounsaturated chains of >14 carbons; PC with one saturated and one unsaturated chain; and PC with phytanoyl chains. Vesicles were most weakly asymmetric using PC with two 14 carbon monounsaturated chains or with two polyunsaturated chains. To define the origin of this behavior, transverse diffusion (flip-flop) of lipids in vesicles containing various PCs was compared. A correlation between asymmetry and transverse diffusion was observed, with slower transverse diffusion in vesicles containing PCs that supported lipid asymmetry. Thus, asymmetric vesicles can be prepared using a wide range of acyl chain structures, but fast transverse diffusion destroys lipid asymmetry. These properties may constrain acyl chain structure in asymmetric natural membranes to avoid short or overly polyunsaturated acyl chains.
机译:脂质不对称性是内部和外部小叶脂质组成的差异,是生物膜的重要特征。通过利用我们最近开发的MβCD催化的交换方法,研究了脂质酰基链结构对形成不对称膜的能力的影响。使用这种方法,SM被有效地引入到包含各种磷脂酰胆碱(PC)的囊泡的外部小叶中,但是所得囊泡是否不对称(SM外部/ PC内部)取决于PC酰基链结构。使用两个碳原子数大于14的单不饱和链的PC,囊泡表现出不对称性。具有一个饱和和一个不饱和链的PC;和带有植烷酰基链的PC。使用具有两个14个碳单不饱和链或两个多不饱和链的PC,囊泡最弱地不对称。为了确定这种行为的起源,比较了脂质在包含各种PC的囊泡中的横向扩散(触发器)。观察到不对称性与横向扩散之间的相关性,其中包含支持脂质不对称性的PC的囊泡中的横向扩散较慢。因此,可以使用多种酰基链结构制备不对称囊泡,但快速的横向扩散会破坏脂质的不对称性。这些性质可以限制不对称天然膜中的酰基链结构,以避免短或过度的多不饱和酰基链。

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