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蟾蜍视杆细胞对光反应的钠电流

The sodium current underlying the responses of toad rods to light.

作者信息

Capovilla M, Cervetto L, Pasino E, Torre V

出版信息

J Physiol. 1981 Aug;317:223-42. doi: 10.1113/jphysiol.1981.sp013822.

Abstract
  1. Intracellular responses were recorded from single rods in the retina of the toads Bufo bufo and Bufo marinus during exposure to solutions in which sodium was replaced by equimolar amounts of choline. 2. Upon moderate reduction (80 and 50 mM) of the external sodium the size of responses to bright flashes decreased as a consequence of both an increase in the resting potential and a decrease of the membrane potential at the peak, while the level of the plateau remained fairly constant. 3. Upon reduction of the external sodium to 22 mM or less, rods hyperpolarized to about the plateau level and failed to respond to illumination. Under these circumstances, membrane depolarization induced by an increased external potassium did not restore the cell responsiveness. Addition of 2-5 mM caesium hyperpolarized the membrane and partially restored the photoresponse. 4. Complete replacements of external sodium with potassium depolarized the rod by 40 +/- 10 mV, and no voltage responses to light could be detected. 5. In the presence of caesium, a nearly complete blockage of the photoresponses was obtained when the external sodium was 5 mM or less. Further reductions of the external sodium did not invert the photoresponses. Application of caesium when the external sodium was nominally zero induced a transient hyperpolarization followed by a slow decay. 6. During exposure to steady illumination, the dependence of the plateau level on the external sodium slowly increased. 7. These results indicate that the ionic current which is directly modulated by the light depends primarily on the external sodium. They suggest also that the current associated with the voltage- and time-dependent process responsible for the sag from peak to plateau of the response to a bright flash of light may have multiple components.
摘要
  1. 在将蟾蜍(Bufo bufo和Bufo marinus)视网膜中的单个视杆细胞暴露于用等摩尔量胆碱替代钠的溶液期间,记录细胞内反应。2. 当细胞外钠适度减少(80和50 mM)时,对明亮闪光的反应大小减小,这是静息电位增加和峰值处膜电位降低共同作用的结果,而平台期水平保持相当恒定。3. 当细胞外钠减少到22 mM或更低时,视杆细胞超极化到约平台期水平,并且对光照无反应。在这些情况下,细胞外钾增加引起的膜去极化不能恢复细胞反应性。添加2 - 5 mM铯可使膜超极化并部分恢复光反应。4. 用钾完全替代细胞外钠使视杆细胞去极化40±10 mV,并且未检测到对光的电压反应。5. 在存在铯的情况下,当细胞外钠为5 mM或更低时,光反应几乎完全被阻断。进一步降低细胞外钠并未使光反应反转。当细胞外钠名义上为零时施加铯会引起短暂的超极化,随后缓慢衰减。6. 在持续光照期间,平台期水平对细胞外钠的依赖性缓慢增加。7. 这些结果表明,直接受光调制的离子电流主要取决于细胞外钠。它们还表明,与负责对明亮闪光反应从峰值到平台期下垂的电压和时间依赖性过程相关的电流可能有多个成分。

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