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光激活通道TRP和TRPL在……光感受器中的不同作用 。(原文句子不完整,“of”后面缺少具体内容)

Distinct roles of light-activated channels TRP and TRPL in photoreceptors of .

作者信息

Saari Paulus, French Andrew S, Torkkeli Päivi H, Liu Hongxia, Immonen Esa-Ville, Frolov Roman V

机构信息

Biophysics Group, Nano and Molecular Systems Research Unit, University of Oulu, Oulu FI-90014, Finland.

Department of Physiology and Biophysics, Dalhousie University, Halifax, Nova Scotia B3H 4R2, Canada.

出版信息

J Gen Physiol. 2017 Apr 3;149(4):455-464. doi: 10.1085/jgp.201611737. Epub 2017 Mar 10.

Abstract

Electrophysiological studies in and have found that the receptor current in their microvillar photoreceptors is generated by two light-activated cationic channels, TRP (transient receptor potential) and TRPL (TRP-like), each having distinct properties. However, the relative contribution of the two channel types to sensory information coding by photoreceptors remains unclear. We recently showed that, in contrast to the diurnal in which TRP is the principal phototransduction channel, photoreceptors of the nocturnal strongly depend on TRPL. Here, we perform a functional analysis, using patch-clamp and intracellular recordings, of photoreceptors after RNA interference to knock down TRP (TRPkd) and TRPL (TRPLkd). Several functional properties were changed in both knockdown phenotypes: cell membrane capacitance was reduced 1.7-fold, light sensitivity was greatly reduced, and amplitudes of sustained light-induced currents and voltage responses decreased more than twofold over the entire range of light intensities. The information rate (IR) was tested using a Gaussian white-noise modulated light stimulus and was lower in TRPkd photoreceptors (28 ± 21 bits/s) than in controls (52 ± 13 bits/s) because of high levels of bump noise. In contrast, although signal amplitudes were smaller than in controls, the mean IR of TRPLkd photoreceptors was unchanged at 54 ± 29 bits/s because of proportionally lower noise. We conclude that TRPL channels provide high-gain/high-noise transduction, suitable for vision in dim light, whereas transduction by TRP channels is relatively low-gain/low-noise and allows better information transfer in bright light.

摘要

对[具体生物名称1]和[具体生物名称2]的电生理研究发现,它们微绒毛光感受器中的受体电流由两种光激活阳离子通道产生,即TRP(瞬时受体电位)和TRPL(类TRP),每种通道都具有独特的特性。然而,这两种通道类型对光感受器编码感觉信息的相对贡献仍不清楚。我们最近发现,与以TRP作为主要光转导通道的昼行性[具体生物名称1]不同,夜行性[具体生物名称2]的光感受器强烈依赖于TRPL。在这里,我们使用膜片钳和细胞内记录对RNA干扰敲低TRP(TRPkd)和TRPL(TRPLkd)后的[具体生物名称2]光感受器进行功能分析。在两种敲低表型中,几种功能特性都发生了变化:细胞膜电容降低了1.7倍,光敏感性大大降低,在整个光强范围内,持续光诱导电流和电压响应的幅度下降了两倍多。使用高斯白噪声调制光刺激测试信息率(IR),由于存在高水平的脉冲噪声,TRPkd光感受器的信息率(28±21比特/秒)低于对照组(52±13比特/秒)。相比之下,尽管TRPLkd光感受器的信号幅度小于对照组,但由于噪声成比例降低,其平均信息率在54±29比特/秒时保持不变。我们得出结论,TRPL通道提供高增益/高噪声转导,适用于暗光下的视觉,而TRP通道的转导相对低增益/低噪声,在强光下能实现更好的信息传递。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c27f/5379922/ec6e0ed7e0d7/JGP_201611737_Fig1.jpg

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