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一种类似无脊椎动物的光转导级联反应介导鸡视网膜神经节细胞的光检测。

An invertebrate-like phototransduction cascade mediates light detection in the chicken retinal ganglion cells.

作者信息

Contin Maria Ana, Verra Daniela M, Guido Mario E

机构信息

CIQUIBIC- Departamento de Química Biológica, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Ciudad Universitaria, 5000 Córdoba, Argentina.

出版信息

FASEB J. 2006 Dec;20(14):2648-50. doi: 10.1096/fj.06-6133fje. Epub 2006 Oct 31.

Abstract

Prebilaterian animals perceived ambient light through nonvisual rhabdomeric photoreceptors (RPs), which evolved as support of the chordate visual system. In vertebrates, the identity of nonvisual photoreceptors and the phototransduction cascade involved in nonimage forming tasks remain uncertain. We investigated whether chicken retinal ganglion cells (RGCs) could be nonvisual photoreceptors and the nature of the photocascade involved. We found that primary cultures of chicken embryonic RGCs express such RP markers as transcription factors Pax6 and Brn3, photopigment melanopsin, and G-protein q but not markers for ciliary photoreceptors (alpha-transducin and Crx). To investigate the photoreceptive capability of RGCs, we assessed the direct effect of light on 3H-melatonin synthesis in RGC cultures synchronized to 12:12 h light-dark cycles. In constant dark, RGCs displayed a daily variation in 3H-melatonin levels peaking at subjective day, which was significantly inhibited by light. This light effect was further increased by the chromophore all-trans-retinal and suppressed by specific inhibitors of the invertebrate photocascade involving phosphoinositide hydrolysis (100 microM neomycin; 5 microM U73122) and Ca2+ mobilization (10 mM BAPTA; 1 mM lanthanum). The results demonstrate that chicken RGCs are intrinsically photosensitive RPs operating via an invertebrate-like phototransduction cascade, which may be responsible for early detection of light before vision occurs.

摘要

原口动物通过非视觉视杆状光感受器(RPs)感知环境光,这些光感受器是作为脊索动物视觉系统的支持而进化的。在脊椎动物中,非视觉光感受器的身份以及参与非成像任务的光转导级联反应仍不确定。我们研究了鸡视网膜神经节细胞(RGCs)是否可能是非视觉光感受器以及所涉及的光转导级联反应的性质。我们发现,鸡胚胎RGCs的原代培养物表达转录因子Pax6和Brn3、光色素黑视蛋白以及G蛋白q等RP标记物,但不表达睫状光感受器的标记物(α - 转导蛋白和Crx)。为了研究RGCs的光感受能力,我们评估了光对同步到12:12小时明暗周期的RGC培养物中3H - 褪黑素合成的直接影响。在持续黑暗中,RGCs的3H - 褪黑素水平呈现每日变化,在主观白天达到峰值,这一变化受到光的显著抑制。发色团全反式视黄醛进一步增强了这种光效应,而涉及磷酸肌醇水解(100 microM新霉素;5 microM U73122)和Ca2 + 动员(10 mM BAPTA;1 mM镧)的无脊椎动物光转导级联反应的特异性抑制剂则抑制了这种光效应。结果表明,鸡RGCs是通过类似无脊椎动物的光转导级联反应发挥作用的内在光敏RPs,这可能负责在视觉出现之前对光的早期检测。

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