Juusola Mikko, Niven Jeremy E, French Andrew S
Department of Physiology and Biophysics, Dalhousie University, Halifax B3H 4H7, Nova Scotia, Canada.
J Neurophysiol. 2003 Sep;90(3):2014-21. doi: 10.1152/jn.00395.2003. Epub 2003 May 21.
We describe the contribution of rapidly inactivating Shaker K+ channels to the dynamic membrane properties of Drosophila photoreceptors. Phototransduction was measured in wild-type and Shaker mutant (Sh14) Drosophila photoreceptors by stimulating with white noise-modulated light contrast and recording the resulting intracellular membrane potential fluctuations. A second-order Volterra kernel series was used to characterize the nonlinear dynamic properties of transduction in the two situations. First-order kernels were indistinguishable in wild-type and Sh14 photoreceptors, indicating that the basic light transduction machinery was always intact. However, second-order kernels of Shaker mutants lacked a large, early amplification, indicating a novel role for Shaker K+ channels in amplifying and accelerating the voltage response of wild-type photoreceptors. A cascade model of two nonlinear static components surrounding one linear dynamic component was able to partially reproduce the experimental responses. Parameters obtained by fitting the model to the experimental data supported the hypothesis that normal Shaker K+ channels contribute an early, positive nonlinearity that partially offsets a later attenuating nonlinearity caused by membrane shunting.
我们描述了快速失活的Shaker钾通道对果蝇光感受器动态膜特性的作用。通过用白噪声调制的光对比度刺激并记录由此产生的细胞内膜电位波动,在野生型和Shaker突变体(Sh14)果蝇光感受器中测量光转导。二阶Volterra核序列用于表征两种情况下转导的非线性动态特性。野生型和Sh14光感受器中的一阶核没有区别,表明基本的光转导机制始终完好无损。然而,Shaker突变体的二阶核缺乏一个大的早期放大,表明Shaker钾通道在放大和加速野生型光感受器的电压响应中具有新作用。围绕一个线性动态成分的两个非线性静态成分的级联模型能够部分重现实验响应。通过将模型拟合到实验数据获得的参数支持以下假设:正常的Shaker钾通道贡献早期的正非线性,部分抵消由膜分流引起的后期衰减非线性。