Institute of Molecular Life Sciences, Neuroscience Center Zurich and Center for Integrative Human Physiology, University of Zurich, Winterthurerstrasse 190, CH-8057 Zurich, Switzerland.
Eur J Neurosci. 2011 Feb;33(4):658-67. doi: 10.1111/j.1460-9568.2010.07574.x. Epub 2011 Feb 8.
Vision of high temporal resolution depends on careful regulation of photoresponse kinetics, beginning with the lifetime of activated photopigment. The activity of rhodopsin is quenched by high-affinity binding of arrestin to photoexcited phosphorylated photopigment, which effectively terminates the visual transduction cascade. This regulation mechanism is well established for rod photoreceptors, yet its role for cone vision is still controversial. In this study we therefore analyzed arrestin function in the cone-dominated vision of larval zebrafish. For both rod (arrS ) and cone (arr3 ) arrestin we isolated two paralogs, each expressed in the respective subset of photoreceptors. Labeling with paralog-specific antibodies revealed subfunctionalized expression of Arr3a in M- and L-cones, and Arr3b in S- and UV-cones. The inactivation of arr3a by morpholino knockdown technology resulted in a severe delay in photoresponse recovery which, under bright light conditions, was rate-limiting. Comparison to opsin phosphorylation-deficient animals confirmed the role of cone arrestin in late cone response recovery. Arr3a activity partially overlapped with the function of the cone-specific kinase Grk7a involved in initial response recovery. Behavioral measurements further revealed Arr3a deficiency to be sufficient to reduce temporal contrast sensitivity, providing evidence for the importance of arrestin in cone vision of high temporal resolution.
高时间分辨率的视觉取决于光反应动力学的精细调节,这从激活的光色素的寿命开始。视紫红质的活性通过高亲和力的抑制蛋白与光激发的磷酸化光色素的结合而猝灭,这有效地终止了视觉转导级联反应。这种调节机制在杆状光感受器中已经得到很好的确立,但它在锥状视觉中的作用仍存在争议。在这项研究中,我们因此分析了在幼虫斑马鱼的锥状视觉主导的视觉中抑制蛋白的功能。对于杆状(arrS)和锥状(arr3)抑制蛋白,我们都分离出了两个同源物,每个同源物都在相应的光感受器亚集中表达。用同源物特异性抗体进行标记显示了 Arr3a 在 M 和 L 锥体中的亚功能表达,以及 Arr3b 在 S 和 UV 锥体中的亚功能表达。用 morpholino 敲低技术使 arr3a 失活导致光反应恢复严重延迟,在强光条件下,这是限速步骤。与视蛋白磷酸化缺陷动物的比较证实了锥状抑制蛋白在晚期锥状反应恢复中的作用。Arr3a 的活性与参与初始反应恢复的锥状特异性激酶 Grk7a 的功能部分重叠。行为测量进一步表明,Arr3a 的缺乏足以降低时间对比敏感度,为抑制蛋白在高时间分辨率的锥状视觉中的重要性提供了证据。