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Effects of Amphiphile Topology on the Aggregation of Oligocholates in Lipid Membranes: Macrocyclic versus Linear Amphiphiles

机译:两亲物拓扑对脂质膜中低聚胆酸酯聚集的影响:大环与线性两亲物。

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摘要

A macrocyclic and a linear trimer of a facially amphiphilic cholate building block were labeled with a fluorescent dansyl group. The environmentally sensitive fluorophore enabled the aggregation of the two oligocholates in lipid membranes to be studied by fluorescence spectroscopy. Concentration-dependent emission wavelength and intensity revealed a higher concentration of water for the cyclic compound. Both compounds were shown by the red-edge excitation shift (REES) to be located near the membrane/water interface at low concentrations, but the cyclic trimer was better able to migrate into the hydrophobic core of the membrane than the linear trimer. Fluorescent quenching by a water-soluble (NaI) and a lipid-soluble (TEMPO) quencher indicated that the cyclic trimer penetrated into the hydrophobic region of the membrane more readily than the linear trimer, which preferred to stay close to the membrane surface. The fluorescent data corroborated with the previous leakage assays that suggested the stacking of the macrocyclic cholate trimer into transmembrane nanopores, driven by the strong associative interactions of water molecules inside the macrocycles in a nonpolar environment.
机译:面部两亲性胆酸盐结构单元的大环和线性三聚体标记有荧光丹磺酰基。对环境敏感的荧光团使得可以通过荧光光谱法研究脂质膜中两个寡聚胆酸盐的聚集。浓度依赖的发射波长和强度表明,环状化合物的水浓度较高。红边激发位移(REES)显示这两种化合物在低浓度下都位于膜/水界面附近,但环状三聚体比线性三聚体更能迁移到膜的疏水核中。用水溶性(NaI)和脂溶性(TEMPO)淬灭剂进行荧光淬灭表明,环状三聚体比线性三聚体更容易渗透到膜的疏水区域中,线性三聚体优选保持靠近膜表面。荧光数据与以前的泄漏测定法相符,后者表明大环胆酸盐三聚体堆叠到跨膜纳米孔中,这是由非极性环境中大环内水分子的强缔合相互作用驱动的。

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