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Elementary and macroscopic light-induced currents and their Ca2+-dependence in the photoreceptors of Periplaneta americana

机译:美洲山light光感受器中的基本和宏观光诱导电流及其对Ca2 +的依赖性

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摘要

In a microvillar photoreceptor, absorption of an incident photon initiates a phototransduction reaction that generates a depolarizing light-induced current (LIC) in the microvillus. Although in-depth knowledge about these processes in photoreceptors of the fruitfly Drosophila is available, not much is known about their nature in other insect species. Here, we present description of some basic properties of both elementary and macroscopic LICs and their Ca2+-dependence in the photoreceptors of a dark-active species, the cockroach Periplaneta americana. Cockroach photoreceptors respond to single photon absorptions by generating quantum bumps with about 5-fold larger amplitudes than in Drosophila. At the macroscopic current level, cockroach photoreceptors responded to light with variable sensitivity and current waveform. This variability could be partially attributed to differences in whole-cell capacitance. Transient LICs, both elementary and macroscopic, showed only moderate dependence on extracellular Ca2+. However, with long light pulses, response inactivation was largely abolished and the overall size of LICs increased when extracellular Ca2+ was omitted. Finally, by determining relative ionic permeabilities from reversals of LICs, we demonstrate that when compared to Drosophila, cockroach light-gated channels are only moderately Ca2+-selective.
机译:在微绒毛感光体中,入射光子的吸收会引发光转导反应,从而在微绒毛中产生去极化的光诱导电流(LIC)。尽管可以深入了解果蝇果蝇感光细胞中的这些过程,但对其在其他昆虫物种中的性质了解甚少。在这里,我们介绍基本和宏观LICs的一些基本特性及其在暗活性物种(美洲蟑螂Periplaneta americana)的光感受器中Ca 2 + 的依赖性。蟑螂感光器通过产生量子突波来响应单光子吸收,其振幅比果蝇大5倍。在宏观电流水平下,蟑螂感光器以可变的灵敏度和电流波形响应光。这种可变性可以部分归因于全细胞电容的差异。瞬时LIC​​,无论是基本的还是宏观的,都仅表现出对细胞外Ca 2 + 的中等依赖性。然而,在长脉冲的情况下,当省略细胞外Ca 2 + 时,响应失活被大部分消除,LIC的总大小增加。最后,通过从LIC的逆转确定相对离子渗透率,我们证明,与果蝇相比,蟑螂的光门通道仅对Ca 2 + 具有中等选择性。

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