首页> 美国卫生研究院文献>The Journal of Physiology >Static and dynamic actions of cytoplasmic Ca2+ in the adaptation of responses to saturating flashes in salamander rods.
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Static and dynamic actions of cytoplasmic Ca2+ in the adaptation of responses to saturating flashes in salamander rods.

机译:细胞质Ca2 +在sal棒中对饱和闪光的响应适应中的静态和动态作用。

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摘要

1. In order to study the relative contribution to light adaptation of the various actions of Ca2+ in rod photoreceptors, changes in cytoplasmic calcium concentration ([Ca2+]i) were opposed by manipulating the calcium fluxes across the outer segment membrane at different times during the response to a bright flash. 2. When the outer segment was superfused with 0 Ca2+, 0 Mg2+,0 Na+ solution just before a bright flash, the period of response saturation was greatly prolonged. But if instead the solution change was made at progressively increasing times after the flash, the delay before the response recovered from saturation declined exponentially towards its value in Ringer solution with a time constant of around 1 s. In contrast, recovery time was little affected by stepping to 0 Ca+,0 Mg2+,0 Na+ solution before the flash and returning to Ringer solution shortly before the normal time of recovery from saturation. 3. When a bright flash was delivered just before the extinction of steady light, the response recovered from saturation progressively earlier as this steady intensity was increased. If, instead, the outer segment was transferred to 0 Ca2+,0 Mg2+,0 Na+ solution just before the bright flash then the time spent in saturation by the response was prolonged in darkness, but this additional delay progressively decreased as the steady intensity increased. 4. These results are consistent with the notion that the light-induced reduction of the time spent in saturation by the bright flash response in Ringer solution resulted from the static decrease in [Ca2+]i induced by the background, while the additional delay in the recovery from saturation when further changes in [Ca2+]i were prevented stemmed from the abolition of the dynamic fall in [Ca2+]i during the flash response. 5. Analysis of the effects of steady light on the time spent in saturation by the bright flash response under these conditions suggests that actions of [Ca2+]i at, or soon after, the time of the flash are largely responsible for the graded changes which take place in the bright flash response during light adaptation, while rapid actions of [Ca2+]i at the time of response recovery also play a role in the adaptation of the steady response to background light itself. 6. These data have been interpreted in terms of differential actions of [Ca2+]i on 'early' stages (e.g. events leading to phosphodiesterase activation) and 'late' stages (e.g. guanylyl cyclase) in the transduction mechanism. A quantitative model is presented which suggests that actions of [Ca2+]i on 'late' stages play a proportinately larger role in background adaptation than actions on 'early' stages.
机译:1.为了研究棒状光感受器中Ca2 +的各种作用对光适应的相对贡献,在操作过程中的不同时间,通过操纵穿过外段膜的钙通量来对抗细胞质钙浓度([Ca2 +] i)的变化。响应明亮的闪光。 2.当外部部分在明亮的闪光之前充满0 Ca2 +,0 Mg2 +,0 Na +溶液时,响应饱和时间大大延长。但是,如果改为在闪烁后逐渐增加时间进行溶液更改,则响应从饱和恢复之前的延迟会以1 s左右的时间常数呈指数下降,在林格溶液中逐渐趋向于其值。相比之下,恢复时间受闪蒸前步入0 Ca +,0 Mg2 +,0 Na +溶液并在从饱和状态恢复正常时间之前不久返回林格溶液的影响很小。 3.当在稳定光消失之前发出明亮的闪光时,随着此稳定强度的增加,响应从饱和逐渐恢复。相反,如果在亮的闪光之前将外部段转移到0 Ca2 +,0 Mg2 +,0 Na +溶液中,则在黑暗中延长了响应所花费的饱和时间,但是随着稳定强度的增加,此附加延迟逐渐减少。 4.这些结果与以下观点是一致的:林格溶液中明亮的闪光响应导致光饱和时间的光诱导减少是由背景引起的[Ca2 +] i的静态下降引起的,而光化学过程中的额外延迟是当避免了[Ca2 +] i的进一步变化而导致的饱和度恢复时,可以避免闪光响应期间[Ca2 +] i的动态下降。 5.在这些条件下,稳定的光对明亮的闪光灯响应在饱和时所花费的时间的影响的分析表明,[Ca2 +] i在闪光灯时间或之后的作用在很大程度上决定了渐变的变化,这种现象发生在光适应过程中的明亮闪光响应中,而[Ca2 +] i在响应恢复时的快速动作也对稳定响应于背景光本身的适应起着作用。 6.这些数据已经根据[Ca2 +] i在转导机制中对“早期”阶段(例如,导致磷酸二酯酶激活的事件)和“晚期”阶段(例如,鸟嘌呤环化酶)的不同作用进行了解释。提出了定量模型,该模型表明[Ca2 +] i在“晚期”阶段的作用在背景适应中的作用比在“早期”阶段的作用更大。

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