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Light-Dependent Translocation of Arrestin in the Absence of Rhodopsin Phosphorylation and Transducin Signaling

机译:视紫红质磷酸化和转导蛋白信号缺失时arrestin的光依赖性转位

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摘要

Visual arrestin plays a crucial role in the termination of the light response in vertebrate photoreceptors by binding selectively to light-activated, phosphorylated rhodopsin. Arrestin localizes predominantly to the inner segments and perinuclear region of dark-adapted rod photoreceptors, whereas light induces redistribution of arrestin to the rod outer segments. The mechanism by which arrestin redistributes in response to light is not known, but it is thought to be associated with the ability of arrestin to bind photolyzed, phosphorylated rhodopsin in the outer segment. In this study, we show that light-driven translocation of arrestin is unaffected in two different mouse models in which rhodopsin phosphorylation is lacking. We further show that arrestin movement is initiated by rhodopsin but does not require transducin signaling. These results exclude passive diffusion and point toward active transport as the mechanism for light-dependent arrestin movement in rod photoreceptor cells.
机译:视觉抑制蛋白通过选择性结合光激活的磷酸化视紫红质,在终止脊椎动物感光细胞的光反应中起着至关重要的作用。 Arrestin主要定位在暗适应的棒状光感受器的内部节段和核周区域,而光则将restaringin重新分布到棒状节段的外部。抑制蛋白响应于光而重新分布的机制尚不清楚,但据认为与抑制蛋白结合外部片段中的光解磷酸化视紫红质的能力有关。在这项研究中,我们表明,在缺乏视紫红质磷酸化的两种不同小鼠模型中,抑制蛋白的光驱动易位不受影响。我们进一步表明,视紫红质抑制蛋白的运动是由视紫红质引发的,但不需要转导蛋白信号。这些结果排除了杆状感光细胞中光依赖的抑制素运动的机制,排除了被动扩散并指向主动转运。

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