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A Combined Patch-Clamp and Electrorotation Study of the Voltage- and Frequency-Dependent Membrane Capacitance Caused by Structurally Dissimilar Lipophilic Anions

机译:结构不同亲脂性阴离子引起的电压和频率依赖性膜电容的膜片钳和电旋转联合研究

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摘要

Interactions of structurally dissimilar anionic compounds with the plasma membrane of HEK293 cells were analyzed by patch clamp and electrorotation. The combined approach provides complementary information on the lipophilicity, preferential affinity of the anions to the inner/outer membrane leaflet, adsorption depth and transmembrane mobility. The anionic species studied here included the well-known lipophilic anions dipicrylamine (DPA), tetraphenylborate (TPB) and [W2(CO)10(S2CH)], the putative lipophilic anion and three new heterocyclic W(CO)5 derivatives. All tested anions partitioned strongly into the cell membrane, as indicated by the capacitance increase in patch-clamped cells. The capacitance increment exhibited a bell-shaped dependence on membrane voltage. The midpoint potentials of the maximum capacitance increment were negative, indicating the exclusion of lipophilic anions from the outer membrane leaflet. The adsorption depth of the large organic anions DPA, TPB and increased and that of W(CO)5 derivatives decreased with increasing concentration of mobile charges. In agreement with the patch-clamp data, electrorotation of cells treated with DPA and W(CO)5 derivatives revealed a large dispersion of membrane capacitance in the kilohertz to megahertz range due to the translocation of mobile charges. In contrast, in the presence of TPB and no mobile charges could be detected by electrorotation, despite their strong membrane adsorption. Our data suggest that the presence of oxygen atoms in the outer molecular shell is an important factor for the fast translocation ability of lipophilic anions.
机译:通过膜片钳和电旋转分析结构不同的阴离子化合物与HEK293细胞质膜的相互作用。组合方法可提供有关亲脂性,阴离子对内/外膜小叶的优先亲和力,吸附深度和跨膜迁移率的补充信息。此处研究的阴离子种类包括众所周知的亲脂性阴离子双吡啶胺(DPA -),四苯硼酸酯(TPB -)和[W2(CO)10(S2CH)] -,推定的亲脂性阴离子和三个新的杂环W(CO)5衍生物。所有测试的阴离子均强烈分配进入细胞膜,如膜片钳细胞的电容增加所表明。电容增量表现出对膜电压的钟形依赖性。最大电容增量的中点电位为负,表明从外膜小叶中排除了亲脂性阴离子。随着移动电荷浓度的增加,大有机阴离子DPA -,TPB -的吸附深度增加,而W(CO)5衍生物的吸附深度减小。与膜片钳数据一致,用DPA -和W(CO)5衍生物处理的细胞的电旋转显示,由于移动电荷的移位,膜电容在千赫兹至兆赫兹范围内有很大的分散。相反,在存在TPB -的情况下,尽管它们具有很强的膜吸附性,但电旋转无法检测到任何可移动电荷。我们的数据表明,在分子外壳中存在氧原子是亲脂性阴离子快速转运能力的重要因素。

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