Rokitskaya Tatyana I, Kosenko Irina D, Sivaev Igor B, Antonenko Yuri N, Bregadze Vladimir I
Belozersky Institute of Physico-Chemical Biology, Lomonosov Moscow State University, Moscow 119991, Russian Federation.
A. N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, 28 Vavilov Str., 119991, Moscow, Russian Federation.
Phys Chem Chem Phys. 2017 Sep 20;19(36):25122-25128. doi: 10.1039/c7cp04207h.
Transmembrane translocation (flip-flop) of cobalt bis(dicarbollide) (COSAN) anions, elicited by application of a voltage-jump across the lipid bilayer membrane, manifested itself in monoexponential electrical current transients in the microsecond time scale. Halogenation of COSAN led to multi-fold acceleration of the flip-flop, the effect increasing with the molecular weight of the halogens. The exception was a fluorinated analog which exhibited slowing of the translocation kinetics. Measurements of the fluorescence ratio of the dye di-4-ANEPPS in lipid vesicles showed significant differences in the adsorption of studied hydrophobic anions. Based on these data, it can be concluded that COSAN and COSAN-F were located on the surface of the lipid membrane in the cisoid conformation increasing the dipole potential of the lipid membrane, while other halogenated COSAN analogs were adsorbed in the transoid conformation. Differences in the flip-flop kinetics of COSAN analogs were attributed to variation in the molecular volume of the anions and their orientation on the membrane surface.
通过在脂质双分子层膜上施加电压阶跃引发的双(二碳硼烷)钴(COSAN)阴离子的跨膜转运(翻转),在微秒时间尺度上表现为单指数电流瞬变。COSAN的卤化导致翻转加速数倍,该效应随卤素分子量的增加而增强。例外的是一种氟化类似物,其转运动力学表现出减慢。对脂质囊泡中染料二-4-ANEPPS荧光比率的测量表明,所研究的疏水阴离子的吸附存在显著差异。基于这些数据,可以得出结论,COSAN和COSAN-F以顺式构象位于脂质膜表面,增加了脂质膜的偶极电势,而其他卤化COSAN类似物以反式构象被吸附。COSAN类似物翻转动力学的差异归因于阴离子分子体积及其在膜表面取向的变化。