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Multiple conductance states of the light-activated channel of Limulus ventral photoreceptors. Alteration of conductance state during light

机译:mul腹侧光感受器的光激活通道的多个电导状态。光照期间电导状态的变化

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摘要

The properties of light-dependent channels in Limulus ventral photoreceptors have been studied in cell-attached patches. Two sizes of single-channel events are seen during illumination. Previous work has characterized the large (40 pS) events; the goal of the current work was to characterize the small (15 pS) events and determine their relationship to the large events. The small events are activated by light rather than as a secondary result of the change in membrane voltage during light. The mean open time of the small events is 1.34 +/- 0.49 ms (mean +/- SD, n = 15), approximately 50% of that of the large events. The large and small events have the same reversal potential and a similar dependence of open-state probability on voltage. Evidence that these events are due to different conductance states of the same channel comes from analysis of relatively infrequent events showing a direct transition between the 15 and 40-pS levels. Furthermore, large and small events do not superpose, even at positive voltages when the probability of being open is very high, as would be predicted if the two-sized events were due to independent channels. Expression of the different conductance states is not random; during steady illumination there are alternating periods of several hundred milliseconds in which there are consecutive, sequential large events followed by periods in which there are consecutive, sequential small events. At early times during the response to a step of light, the large conductance state is preferentially expressed. At later times, there is an increase in the relative contribution of the low conductance state. These findings indicate that there is a process that changes the preferred conductance state of the channel. This alteration has functional importance in the process of light adaptation.
机译:已在细胞附着的斑片中研究了properties腹侧感光器中光依赖性通道的特性。在照明期间可以看到两种大小的单通道事件。以前的工作已经表征了大型(40 pS)事件。当前工作的目标是表征小事件(15 pS)并确定它们与大事件的关系。小事件是由光激活的,而不是光过程中膜电压变化的次要结果。小事件的平均打开时间为1.34 +/- 0.49 ms(平均+/- SD,n = 15),约为大事件的50%。大大小小的事件具有相同的反转电位,并且开态概率对电压的依赖性相似。这些事件归因于同一通道的不同电导状态的证据来自对相对不频繁的事件的分析,这些事件显示了15和40 pS水平之间的直接转换。此外,大型事件和小型事件也不会重叠,即使在打开可能性很高的正电压下也是如此,这是如果两次事件是由于独立通道导致的,则可以预测。不同电导状态的表达不是随机的。在稳定照明期间,有几百毫秒的交替周期,其中有连续的,连续的小事件,其后是有连续的,连续的小事件的周期。在对光阶跃的响应期间的早期,优先表达大电导状态。稍后,低电导状态的相对贡献会增加。这些发现表明存在改变通道的优选电导状态的过程。这种改变在光适应过程中具有功能重要性。

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