Jenkins Aaron, Muñoz Marta, Tarttelin Emma E, Bellingham James, Foster Russell G, Hankins Mark W
Department of Integrative and Molecular Neuroscience, Division of Neuroscience and Psychological Medicine, Imperial College Faculty of Medicine, Charing Cross Hospital, London, United Kingdom.
Curr Biol. 2003 Aug 5;13(15):1269-78. doi: 10.1016/s0960-9822(03)00509-8.
Although photoreception is best understood in rods and cones, it is increasingly clear that these are not the only photoreceptive cells of the vertebrate retina. While considerable attention has been paid to the role of melanopsin in the generation of intrinsic light sensitivity in the retinal ganglion cells of mammals, nothing is known about the photoreceptive capacity of the horizontal cells of the fish retina in which both VA opsin and melanopsin are expressed. As yet, there has been little more than speculation as to the physiological function of these opsins within local retinal circuit neurons.
VA opsin and melanopsin have been isolated and localized within the well-characterized cyprinid retina of the roach (Rutilus rutilus). Parallel electrophysiological studies identified a novel subtype of horizontal cell (HC-RSD) characterized by a depolarizing response that fits an opsin photopigment with a lambda(max) of 477 nm. The HC-RSD cells mediate responses to light that are characterized by long integration times, well beyond those observed for rods and cones. Significantly, HC-RSD responses persist when the conventional photoreceptor inputs are saturated by background light.
The syncytium of coupled horizontal cells has long been considered to provide a signal of overall retinal irradiance. Our data suggest that this light information is, at least in part, derived from a population of intrinsically photosensitive VA opsin and/or melanopsin horizontal cells.
尽管在视杆细胞和视锥细胞中光感受作用得到了最充分的理解,但越来越明显的是,它们并非脊椎动物视网膜中唯一的光感受细胞。虽然人们对黑视蛋白在哺乳动物视网膜神经节细胞产生内在光敏感性中的作用给予了相当多的关注,但对于同时表达视黄醛结合蛋白(VA视蛋白)和黑视蛋白的鱼类视网膜水平细胞的光感受能力却一无所知。迄今为止,对于这些视蛋白在局部视网膜回路神经元中的生理功能,人们不过是进行了一些推测而已。
在特征明确的拟鲤视网膜中,已分离并定位了VA视蛋白和黑视蛋白。平行的电生理研究确定了一种新型水平细胞亚型(HC-RSD),其特征为去极化反应,该反应与最大吸收波长(λmax)为477nm的视蛋白光色素相匹配。HC-RSD细胞介导对光的反应,其特征是积分时间长,远远超过视杆细胞和视锥细胞所观察到的积分时间。值得注意的是,当传统光感受器输入被背景光饱和时,HC-RSD反应仍然存在。
长期以来,人们一直认为耦合水平细胞的合体为视网膜整体辐照度提供信号。我们的数据表明,这种光信息至少部分源自一群具有内在光敏感性的VA视蛋白和/或黑视蛋白水平细胞。