Mennerick Steven, Lamberta Michael, Shu Hong-Jin, Hogins Joshua, Wang Cunde, Covey Douglas F, Eisenman Lawrence N, Zorumski Charles F
Department of Psychiatry, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
Biophys J. 2008 Jul;95(1):176-85. doi: 10.1529/biophysj.107.124768. Epub 2008 Mar 13.
We investigated the electrophysiological signature of neuroactive steroid interactions with the plasma membrane. We found that charged, sulfated neuroactive steroids, those that exhibit noncompetitive antagonism of GABA(A) receptors, altered capacitive charge movement in response to voltage pulses in cells lacking GABA receptors. Uncharged steroids, some of which are potent enhancers of GABA(A) receptor activity, produced no alteration in membrane capacitance. We hypothesized that the charge movements might result from physical translocation of the charged steroid through the transmembrane voltage, as has been observed previously with several hydrophobic anions. However, the charge movements and relaxation time constants of capacitive currents did not exhibit the Boltzmann-type voltage dependence predicted by a single barrier model. Further, a fluorescently tagged analog of a sulfated neurosteroid altered membrane capacitance similar to the parent compound but produced no voltage-dependent fluorescence change, a result inconsistent with a strong change in the polar environment of the fluorophore during depolarization. These findings suggest that negatively charged sulfated steroids alter the plasma membrane capacitance without physical movement of the molecule through the electric field.
我们研究了神经活性甾体与质膜相互作用的电生理特征。我们发现,带电荷的硫酸化神经活性甾体,即那些对GABA(A)受体表现出非竞争性拮抗作用的甾体,在缺乏GABA受体的细胞中,会响应电压脉冲而改变电容性电荷移动。不带电荷的甾体,其中一些是GABA(A)受体活性的强效增强剂,对膜电容没有影响。我们推测,电荷移动可能是由于带电荷的甾体通过跨膜电压进行物理转运所致,此前在几种疏水性阴离子中也观察到了这种现象。然而,电容性电流的电荷移动和弛豫时间常数并未表现出单屏障模型预测的玻尔兹曼型电压依赖性。此外,一种硫酸化神经甾体的荧光标记类似物改变膜电容的方式与母体化合物相似,但并未产生电压依赖性荧光变化,这一结果与去极化过程中荧光团极性环境的强烈变化不一致。这些发现表明,带负电荷的硫酸化甾体改变质膜电容,但分子并未通过电场进行物理移动。