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R18和DiI跨脂质双层的电压依赖性易位导致荧光变化。

Voltage-dependent translocation of R18 and DiI across lipid bilayers leads to fluorescence changes.

作者信息

Melikyan G B, Deriy B N, Ok D C, Cohen F S

机构信息

Rush Medical College, Department of Molecular Biophysics and Physiology, Chicago, Illinois 60612, USA.

出版信息

Biophys J. 1996 Nov;71(5):2680-91. doi: 10.1016/S0006-3495(96)79459-6.

Abstract

We show that the lipophilic, cationic fluorescent dyes R18 and Dil translocate from one monolayer of a phospholipid bilayer membrane to the other in a concentration and voltage-dependent manner. When the probes were incorporated into voltage-clamped planar membranes and potentials were applied, displacement currents resulted. The charged probes sensed a large fraction of the applied field. When these probes were added to only one monolayer, displacement currents were symmetrical around 0 mV, indicating that the probes distributed equally between the two monolayers. Charge translocation required that the bilayer be fluid. When membranes were in a condensed gel phase, displacement currents were not observed; raising the temperature to above the gel-liquid crystalline transition restored the currents. Translocation of R18 was also shown by fluorescence measurements. When R18 was in the bilayer at high, self-quenching concentrations, voltage pulses led to voltage-dependent fluorescence changes. The kinetics of the fluorescence changes and charge translocations correlated. Adding the quencher I- to one aqueous phase caused fluorescence to decrease or increase when voltage moved R18 toward or away from the quencher at low, nonquenching concentrations of R18. In contrast to R18, Dil incorporated into bilayers was a carrier fo I-, and hence I- altered Dil currents. Voltage-driven translocations allow R18 and Dil to be used to probe membrane potential changes.

摘要

我们发现,亲脂性阳离子荧光染料R18和Dil以浓度和电压依赖的方式从磷脂双分子层膜的一个单层转移到另一个单层。当将这些探针掺入电压钳制的平面膜并施加电位时,会产生位移电流。带电探针感知到大部分施加的电场。当仅将这些探针添加到一个单层时,位移电流在0 mV左右呈对称分布,表明探针在两个单层之间均匀分布。电荷转移要求双分子层是流体。当膜处于凝聚凝胶相时,未观察到位移电流;将温度升高到凝胶-液晶转变温度以上可恢复电流。荧光测量也显示了R18的转移。当R18以高浓度、自猝灭浓度存在于双分子层中时,电压脉冲会导致电压依赖性荧光变化。荧光变化和电荷转移的动力学相关。在低浓度、非猝灭浓度的R18下,当电压使R18朝向或远离猝灭剂I-移动时,向一个水相中添加猝灭剂I-会导致荧光降低或增加。与R18不同,掺入双分子层的Dil是I-的载体,因此I-会改变Dil电流。电压驱动的转移使R18和Dil可用于探测膜电位变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/633c/1233754/786b990d8186/biophysj00041-0449-a.jpg

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