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Functional characterisation and subcellular localisation of HCN1 channels in rabbit retinal rod photoreceptors

机译:HCN1通道在兔视网膜棒感光细胞中的功能表征和亚细胞定位

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摘要

Gating of voltage-dependent conductances in retinal photoreceptors is the first step of a process leading to the enhancement of the temporal performance of the visual system. The molecular components underlying voltage-dependent gating in rods are presently poorly defined. In the present work we have investigated the isoform composition and the functional characteristics of hyperpolarisation-activated cyclic nucleotide-gated channels (HCN) in rabbit rods. Using immunocytochemistry we show the expression in the inner segment and cell body of the isoform 1 (HCN1). Electrophysiological investigations show that hyperpolarisation-activated currents (Ih) can be measured only from the cell regions where HCN1 is expressed. Half-activation voltage (–75.0 ± 0.3 mV) and kinetics (t1/2 of 101 ± 8 ms at –110 mV and 20 °C) of the Ih in rods are similar to those of the macroscopic current carried by homomeric rabbit HCN1 channels expressed in HEK 293 cells. The homomeric nature of HCN1 channels in rods is compatible with the observation that cAMP induces a small shift (2.3 ± 0.8 mV) in the half-activation voltage of Ih. In addition, the observation that within the physiological range of membrane potentials, cAMP does not significantly affect the gain of the current-to-voltage conversion, may reflect the need to protect the first step in the processing of visual signals from changes in cAMP turnover.
机译:视网膜感光器中电压依赖性电导的门控是导致视觉系统时间性能增强的过程的第一步。目前对杆中电压依赖性门控的分子成分定义不清。在目前的工作中,我们已经研究了兔棒中同种型的组成和超极化激活的环状核苷酸门控通道(HCN)的功能特性。使用免疫细胞化学,我们显示了亚型1(HCN1)的内部片段和细胞体内的表达。电生理研究表明,只能从表达HCN1的细胞区域测量超极化激活电流(Ih)。棒中Ih的半激活电压(–75.0±0.3 mV)和动力学特性(在–110 mV和20°C时,动力学的t1 / 2为101±8 ms,t1 / 2)类似于同源兔HCN1通道所携带的宏观电流在HEK 293细胞中表达。棒中HCN1通道的同源性与以下观察结果相符:cAMP会在Ih的半激活电压中引起小的变化(2.3±0.8 mV)。此外,观察到在膜电位的生理范围内,cAMP不会显着影响电流至电压转换的增益,这可能反映了需要保护视觉信号处理的第一步不受cAMP转换的影响。 。

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