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Influence of transbilayer area asymmetry on the morphology of large unilamellar vesicles.

机译:跨双层面积不对称对大单层囊泡形态的影响。

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摘要

The morphological consequences of differences in the monolayer surface areas of large unilamellar vesicles (LUVs) have been examined employing cryoelectron microscopy techniques. Surface area was varied by inducing net transbilayer transport of dioleoylphosphatidylglycerol (DOPG) in dioleoylphosphatidylcholine (DOPC):DOPG (9:1, mol:mol) LUVs in response to transmembrane pH gradients. It is shown that when DOPG is transported from the inner to the outer monolayer, initially invaginated LUVs are transformed to long narrow tubular structures, or spherical structures with one or more protrusions. Tubular structures are also seen in response to outward DOPG transport in DOPC:DOPG:Chol (6:1:3, mol:mol:mol) LUV systems, and when lyso-PC is allowed to partition into the exterior monolayer of DOPC:DOPG (9:1, mol:mol) LUVs in the absence of DOPG transport. Conversely, when the inner monolayer area is expanded by the transport of DOPG from the outer monolayer to the inner monolayer of non-invaginated LUVs, a reversion to invaginated structures is observed. The morphological changes are well described by an elastic bending theory of the bilayer. Identification of the difference in relaxed monolayer areas and of the volume-to-area ratio of the LUVs as the shape-determining factors allows a quantitative classification of the observed morphologies. The morphology seen in LUVs supports the possibility that factors leading to differences in monolayer surface areas could play important roles in intracellular membrane transport processes.
机译:大单层囊泡(LUVs)的单层表面积差异的形态学后果已使用冷冻电子显微镜技术进行了检查。响应跨膜pH梯度,通过在二油酰基磷脂酰胆碱(DOPC):DOPG(9:1,mol:mol)LUV中诱导二油酰基磷脂酰甘油(DOPG)的净双分子转运来改变表面积。结果表明,当DOPG从内部单层运输到外部单层时,最初侵入的LUV转变为细长的管状结构或具有一个或多个突起的球形结构。在DOPC:DOPG:Chol(6:1:3,mol:mol:mol)LUV系统中,以及当允许溶酶-PC分配到DOPC:DOPG的外部单层中时,也可以看到管状结构响应向外DOPG的运输(9:1,摩尔:摩尔)LUVs在没有DOPG传输的情况下。相反,当通过DOPG从非单倍体LUV的外单层到内部单层的运输使内部单层区域扩展时,观察到向嵌入结构的回复。双层的弹性弯曲理论很好地描述了形态变化。识别松弛的单层区域的差异以及LUV的体积/面积比作为形状确定因素,可以对观察到的形态进行定量分类。在LUV中看到的形态支持以下可能性:导致单层表面积差异的因素可能在细胞内膜运输过程中起重要作用。

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