Valdez Diego J, Nieto Paula S, Garbarino-Pico Eduardo, Avalle Lucia B, Díaz-Fajreldines Hugo, Schurrer Clemar, Cheng Kimberly M, Guido Mario E
CIQUIBIC-Departamento de Química Biológica, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, 5000 Córdoba, Argentina.
FASEB J. 2009 Apr;23(4):1186-95. doi: 10.1096/fj.08-117085. Epub 2008 Dec 12.
In mammals, photoreceptors located in the inner retina convey photic information to the brain, regulating diverse non-image-forming tasks such as pupillary light reflexes and photic synchronization (entrainment) of daily activity rhythms. In nonmammalian vertebrates, the retina, deep brain photoreceptors, and pineal organ may be photoreceptive. Here we investigated light perception in the absence of functional cone and rod photoreceptors using GUCY1* chickens, birds carrying a null mutation that causes blindness at hatch. They showed light responses in both the pupillary light reflex and the entrainment of feeding rhythms to a 12:12 h light-dark cycle. Light responses persisted even when the extraretinal photoperception was abolished, but they were lost after enucleation; this strongly indicates the essential role played by the inner retina. A sensitivity spectrum study for the pupillary reflex that combined pupil responses to different monochromatic lights of various intensities demonstrated that a single opsin/vitamin A-based photopigment peaking at 484 nm drives photic responses; the best fit (lowest sum of squares, R(2)=0.9622) was attained with an opsin:vitamin A2 template. The results are the first characterization of functional inner retinal photoreceptors participating in the regulation of non-image-forming activities in nonmammalian vertebrates.
在哺乳动物中,位于视网膜内层的光感受器将光信息传递给大脑,调节各种非成像任务,如瞳孔光反射和日常活动节律的光同步(昼夜节律调节)。在非哺乳动物脊椎动物中,视网膜、深部脑光感受器和松果体可能具有感光性。在这里,我们使用GUCY1鸡研究了在缺乏功能性视锥和视杆光感受器的情况下的光感知,GUCY1鸡携带一种无效突变,导致孵化时失明。它们在瞳孔光反射和进食节律对12:12小时明暗循环的昼夜节律调节中均表现出光反应。即使视网膜外光感知被消除,光反应仍持续存在,但在摘除眼球后光反应消失;这强烈表明了视网膜内层所起的重要作用。一项针对瞳孔反射的敏感度光谱研究结合了瞳孔对不同强度单色光的反应,结果表明,一种在484 nm处达到峰值的基于视蛋白/维生素A的单一光色素驱动光反应;使用视蛋白:维生素A2模板可获得最佳拟合(最低平方和,R(2)=0.9622)。这些结果首次对参与非哺乳动物脊椎动物非成像活动调节的功能性视网膜内层光感受器进行了表征。