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Relationship between light sensitivity and intracellular free Ca concentration in Limulus ventral photoreceptors. A quantitative study using Ca-selective microelectrodes

机译:Li腹感光器中光敏感性与细胞内游离钙浓度之间的关系。使用钙选择性微电极的定量研究

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摘要

The possible role of Ca ions in mediating the drop in sensitivity associated with light adaptation in Limulus ventral photoreceptors was assessed by simultaneously measuring the sensitivity to light and the intracellular free Ca concentration (Cai); the latter was measured by using Ca-selective microelectrodes. In dark-adapted photoreceptors, the mean resting Cai was 3.5 +/- 2.5 microM SD (n = 31). No correlation was found between resting Cai and absolute sensitivity from cell to cell. Typically, photoreceptors are not uniformly sensitive to light; the Cai rise evoked by uniform illumination was 20-40 times larger and faster in the most sensitive region of the cell (the rhabdomeral lobe) than it was away from it. In response to a brief flash, the Cai rise was barely detectable when 10(2) photons were absorbed, and it was saturated when approximately 10(5) photons were absorbed. During maintained illumination, starting near the threshold of light adaptation, steady Cai increases were associated with steady desensitizations over several log units of light intensity: a 100-fold desensitization was associated with a 2.5-fold increase in Cai. After a bright flash, sensitivity and Cai recovered with different time courses: the cell was still desensitized by approximately 0.5 log units when Cai had already recovered to the prestimulus level, which suggests that under those conditions Cai is not the rate-limiting step of dark adaptation. Ionophoretic injection of EGTA markedly decreased the light-induced Cai rise and increased the time to peak of the light response, but did not alter the resting Cai, which suggests that the time to peak is affected by a change in the capacity to bind Ca2+ and not by resting Cai. Lowering the extracellular Ca2+ concentration (Cao) first decreased Cai and increased sensitivity. Longer exposure to low Cao resulted in a further decrease of Cai but decreased rather than increased sensitivity, which suggests that under certain conditions it is possible to uncouple Cai and sensitivity.
机译:通过同时测量对光的敏感性和细胞内游离Ca浓度(Cai),评估了Ca离子在介导Li腹侧感光细胞中与光适应相关的敏感性下降中的可能作用;后者是通过使用Ca选择性微电极测量的。在适应暗适应的感光器中,平均静止Cai为3.5 +/- 2.5 microM SD(n = 31)。在静息蔡和细胞之间的绝对敏感性之间未发现相关性。通常,感光体对光不是均匀敏感的。在细胞最敏感的区域(横纹状叶),均匀照射引起的Cai升高比离开它时大20到40倍,并且更快。响应短暂的闪光,当吸收10(2)个光子时几乎无法检测到Cai上升,而当吸收大约10(5)个光子时才达到饱和。在维持照明期间,从接近光适应阈值开始,在多个光强度对数单位上,稳定的Cai升高与稳定的脱敏有关:100倍的脱敏与Cai的2.5倍增加相关。明亮的闪光后,灵敏度和Cai在不同的时间过程中恢复:当Cai已经恢复到刺激前水平时,细胞仍以约0.5 log单位脱敏,这表明在这些条件下,Cai并不是黑暗的限速步骤适应。离子注入EGTA显着降低了光诱导的Cai升高并增加了达到光响应峰的时间,但并未改变静止的Cai,这表明达到峰的时间受结合Ca2 +和Ca2 +能力的影响。不靠蔡静。降低细胞外Ca2 +浓度(Cao)首先会降低Cai并增加敏感性。长时间接触低Cao会导致Cai进一步降低,但灵敏度降低而不是增加,这表明在某些条件下可以使Cai和灵敏度脱钩。

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