Kefalov Vladimir J, Estevez Maureen E, Kono Massahiro, Goletz Patrice W, Crouch Rosalie K, Cornwall M Carter, Yau King-Wai
Department of Neuroscience, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA.
Neuron. 2005 Jun 16;46(6):879-90. doi: 10.1016/j.neuron.2005.05.009.
Retinal rod and cone pigments consist of an apoprotein, opsin, covalently linked to a chromophore, 11-cis retinal. Here we demonstrate that the formation of the covalent bond between opsin and 11-cis retinal is reversible in darkness in amphibian red cones, but essentially irreversible in red rods. This dissociation, apparently a general property of cone pigments, results in a surprisingly large amount of free opsin--about 10% of total opsin--in dark-adapted red cones. We attribute this significant level of free opsin to the low concentration of intracellular free 11-cis retinal, estimated to be only a tiny fraction (approximately 0.1 %) of the pigment content in red cones. With its constitutive transducin-stimulating activity, the free cone opsin produces an approximately 2-fold desensitization in red cones, equivalent to that produced by a steady light causing 500 photoisomerizations s-1. Cone pigment dissociation therefore contributes to the sensitivity difference between rods and cones.
视网膜视杆和视锥色素由一种脱辅基蛋白(视蛋白)和一个发色团(11-顺式视黄醛)通过共价键连接而成。我们在此证明,在两栖动物的红色视锥细胞中,视蛋白与11-顺式视黄醛之间的共价键形成在黑暗中是可逆的,但在红色视杆细胞中基本不可逆。这种解离显然是视锥色素的一个普遍特性,导致在暗适应的红色视锥细胞中出现数量惊人的游离视蛋白——约占视蛋白总量的10%。我们将这种显著水平的游离视蛋白归因于细胞内游离11-顺式视黄醛的低浓度,据估计其仅为红色视锥细胞中色素含量的极小一部分(约为0.1%)。游离视锥视蛋白具有组成型转导素刺激活性,在红色视锥细胞中产生约2倍的脱敏作用,相当于由每秒引起500次光异构化的稳定光所产生的脱敏作用。因此,视锥色素解离导致了视杆和视锥细胞之间的敏感度差异。