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氟化物会阻断蝗虫光感受器中转导的失活步骤。

Fluoride blocks an inactivation step of transduction in a locust photoreceptor.

作者信息

Payne R

出版信息

J Physiol. 1982 Apr;325:261-79. doi: 10.1113/jphysiol.1982.sp014149.

Abstract
  1. Photoreceptors in a superfused retina of a locust compound eye are treated with saline containing 10 mM-NaF, while their intracellular resting potential and responses are recorded using glass micropipettes.2. Treatment for two minutes with 10 mM-NaF, followed by a series of brief, bright flashes of light, results in an irreversible, noisy depolarization of approximately 10 mV. The final, stable level of depolarization is reached through the summed effect of each of the noisy, depolarizing afterpotentials that follow every response of the cell to a light flash. If kept in darkness after treatment with NaF, the noisy depolarization still develops, but more gradually, over a period of 5 min.3. The voltage noise induced by NaF mimics light-induced voltage noise when the two are compared at mean depolarizations of more than 15 mV. At very small depolarizations, however, fluoride-induced noise cannot be resolved into the large discrete events (bumps) that are typical of the response of a dark-adapted photoreceptor to a single photon.4. The complete replacement of the superfusate sodium by choline reversibly reduces the fluoride-induced noise and depolarization to the same extent as it does the light-induced noise and depolarization of an illuminated cell.5. Increasing the superfusate calcium concentration from 0.5 to 10 mM also reversibly reduces fluoride-induced noise and depolarization to the same extent as it does light-induced noise and depolarization. This action of calcium is accompanied by an increase in a cell's input resistance which opposes the reduction caused by light or fluoride treatment.6. The results confirm the proposal (Payne, 1981) that anionic metabolic inhibitors cause spontaneous activity in sodium channels that are normally opened by light. A model is proposed in which fluoride acts by blocking the inactivation of a late stage in the transduction mechanism.
摘要
  1. 用含有10 mM氟化钠的生理盐水处理蝗虫复眼超灌注视网膜中的光感受器,同时使用玻璃微电极记录其细胞内静息电位和反应。

  2. 用10 mM氟化钠处理两分钟,然后进行一系列短暂、明亮的闪光,会导致约10 mV的不可逆、有噪声的去极化。最终稳定的去极化水平是通过细胞对每次闪光反应后出现的有噪声的去极化后电位的总和效应达到的。在用氟化钠处理后若置于黑暗中,有噪声的去极化仍会出现,但更为缓慢,需5分钟时间。

  3. 当在平均去极化超过15 mV时比较,氟化钠诱导的电压噪声模拟光诱导的电压噪声。然而,在非常小的去极化时,氟化物诱导的噪声无法分解为暗适应光感受器对单个光子反应典型的大的离散事件(突波)。

  4. 用胆碱完全替代超灌注液中的钠,可使氟化物诱导的噪声和去极化可逆性降低,降低程度与光照细胞时光诱导的噪声和去极化相同。

  5. 将超灌注液钙浓度从0.5 mM增加到10 mM,也可使氟化物诱导的噪声和去极化可逆性降低,降低程度与光诱导的噪声和去极化相同。钙的这种作用伴随着细胞输入电阻的增加,这与光照或氟化物处理引起的降低相反。

  6. 结果证实了 Payne(1981年)的提议,即阴离子代谢抑制剂会导致通常由光打开的钠通道产生自发活动。提出了一个模型,其中氟化物通过阻断转导机制后期的失活起作用。

相似文献

2
Intrinsic noise in locust photoreceptors.蝗虫光感受器中的内在噪声。
J Physiol. 1982 Nov;332:25-45. doi: 10.1113/jphysiol.1982.sp014398.

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7
Visual excitation and blood clotting.视觉兴奋与血液凝固。
Science. 1965 Nov 19;150(3699):1028-30. doi: 10.1126/science.150.3699.1028.

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