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Communication: Rigidification of a lipid bilayer by an incorporated n-alkane

机译:交流:通过掺入的正构烷烃对脂质双层的刚性化

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Towards a greater understanding of the effects of organic molecules in biomembranes, the effects of a flexible alkyl chain on the morphologies of phospholipid vesicles are investigated. Vesicles composed of 1,2-dipalmitoyl-sn-glycerol-3-phosphocholine and tetradecane (TD) rupture during cooling from the liquid-crystalline phase to the gel phase. A model calculation based on the size-dependent rupture probability indicates that the bending rigidity of the bilayer in the gel phase is more than 10 times higher than that without TD, resulting in the rupture arising from elastic stress. The rigidification is caused by the denser molecular packing in the hydrophobic region by TD. There is little change of the rigidity in the liquid-crystalline phase. Additionally, the rigidification produces a characteristic morphology of the ternary giant vesicles including TD. Reported thermal behaviors imply that molecules with a linear and long alkyl chain, such as trans fatty acids, universally exhibit a similar effect, in contrast to rigid and bulky molecules, such as cholesterol. (C) 2016 AIP Publishing LLC.
机译:为了更好地理解生物膜中有机分子的作用,研究了柔性烷基链对磷脂囊泡形态的影响。由1,2-二棕榈酰基-sn-甘油-3-磷酸胆碱和十四烷(TD)组成的囊泡在从液晶相冷却至凝胶相的过程中破裂。基于与尺寸相关的破裂概率的模型计算表明,在凝胶相中双层的弯曲刚度比没有TD时的弯曲刚度高10倍以上,导致由弹性应力引起的破裂。刚性是由TD在疏水区域中更密集的分子堆积引起的。液晶相的刚性几乎没有变化。另外,硬化产生包括TD的三元大囊泡的特征形态。报道的热行为暗示具有直链和长烷基链的分子,例如反式脂肪酸,与刚性和庞大的分子,例如胆固醇相比,普遍表现出相似的作用。 (C)2016 AIP出版有限责任公司。

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