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视网膜沿视锥和视杆光感受器的移动。

Movement of retinal along cone and rod photoreceptors.

作者信息

Jin J, Jones G J, Cornwall M C

机构信息

Department of Physiology, Boston University School of Medicine, MA 02118.

出版信息

Vis Neurosci. 1994 Mar-Apr;11(2):389-99. doi: 10.1017/s0952523800001735.

Abstract

Single isolated photoreceptors can be taken through a visual cycle of light adaptation by bleaching visual pigment, followed by dark adaptation when supplied with 11-cis retinal. Light adaptation after bleaching is manifested by faster response kinetics and a permanent reduction in sensitivity to light flashes, presumed to be due to the presence of bleached visual pigment. The recovery of flash sensitivity during dark adaptation is assumed to be due to regeneration of visual pigment to pre-bleach levels. In previous work, the outer segments of bleached, light-adapted cells were exposed to 11-cis retinal. In the present work, the cell bodies of bleached photoreceptors were exposed. We report a marked difference between rods and cones. Bleached cones recover sensitivity when their cell bodies are exposed to 11-cis retinal. Bleached rods do not. These results imply that retinal can move freely along the cone photoreceptor, but retinal either is not taken up by the rod cell body or retinal cannot move from the rod cell body to the rod outer segment. The free transfer of retinal along cone but not along rod photoreceptors could explain why, during dark adaptation in the retina, cones have access to a store of 11-cis retinal which is not available to rods. Additional experiments investigated the movement of retinal along bleached rod outer segments. The results indicate that retinal can move along the rod outer segment, but that this movement is slow, occurring at about the same rate as the regeneration of visual pigment.

摘要

单个分离的光感受器可以通过漂白视色素经历光适应的视觉循环,随后在供应11-顺式视黄醛时经历暗适应。漂白后的光适应表现为更快的反应动力学和对闪光敏感性的永久性降低,推测这是由于存在漂白的视色素。暗适应期间闪光敏感性的恢复被认为是由于视色素再生到漂白前的水平。在先前的工作中,将漂白的、光适应细胞的外段暴露于11-顺式视黄醛。在目前的工作中,将漂白的光感受器的细胞体暴露。我们报告了视杆细胞和视锥细胞之间的显著差异。当漂白的视锥细胞的细胞体暴露于11-顺式视黄醛时,它们恢复敏感性。漂白的视杆细胞则不然。这些结果表明,视黄醛可以沿着视锥光感受器自由移动,但视黄醛要么不被视杆细胞体摄取,要么不能从视杆细胞体移动到视杆外段。视黄醛沿视锥而非沿视杆光感受器的自由转移可以解释为什么在视网膜暗适应期间,视锥细胞可以利用视杆细胞无法获得的11-顺式视黄醛储存。额外的实验研究了视黄醛沿漂白的视杆外段的移动。结果表明,视黄醛可以沿着视杆外段移动,但这种移动很慢,发生的速率与视色素的再生速率大致相同。

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