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Apo-Opsin Exists in Equilibrium Between a Predominant Inactive and a Rare Highly Active State

机译:载脂蛋白-视蛋白平衡存在于主要的非活性状态和稀有的高度活性状态之间

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摘要

Bleaching adaptation in rod photoreceptors is mediated by apo-opsin, which activates phototransduction with effective activity 105- to 106-fold lower than that of photoactivated rhodopsin (meta II). However, the mechanism that produces such low opsin activity is unknown. To address this question, we sought to record single opsin responses in mouse rods. We used mutant mice lacking efficient calcium feedback to boosts rod responses and generated a small fraction of opsin by photobleaching ∼1% of rhodopsin. The bleach produced a dramatic increase in the frequency of discrete photoresponse-like events. This activity persisted for hours, was quenched by 11-cis-retinal, and was blocked by uncoupling opsin from phototransduction, all indicating opsin as its source. Opsin-driven discrete activity was also observed in rods containing non-activatable rhodopsin, ruling out transactivation of rhodopsin by opsin. We conclude that bleaching adaptation is mediated by opsin that exists in equilibrium between a predominant inactive and a rare meta II-like state.>SIGNIFICANCE STATEMENT Electrophysiological analysis is used to show that the G-protein-coupled receptor opsin exists in equilibrium between a predominant inactive and a rare highly active state that mediates bleaching adaptation in photoreceptors.
机译:载脂蛋白-视蛋白介导杆状感光细胞的漂白适应,其激活的光转导的有效活性比光活化的视紫红质(元II)低10 5 -至10 6 -倍。 。但是,产生如此低的视蛋白活性的机理尚不清楚。为了解决这个问题,我们试图记录小鼠视杆中的单视蛋白反应。我们使用缺乏有效钙反馈的突变小鼠来增强杆反应,并通过光漂白约1%的视紫红质产生少量视蛋白。漂白剂使类似光响应的离散事件的发生频率大大增加。该活性持续数小时,被11-顺-视网膜淬灭,并被视蛋白从光转导中解偶联而阻断,所有表明视蛋白是其来源。在含有不可激活的视紫红质的棒中也观察到视蛋白驱动的离散活性,排除视蛋白对视紫红质的反式激活。我们得出结论,漂白适应是由视蛋白介导的,视蛋白存在于主要的非活性状态和罕见的类似meta II的状态之间。>显着性声明采用电生理分析来表明G蛋白偶联受体视蛋白存在于主要的非活性状态和稀有的高活性状态之间,该状态介导感光体的漂白适应。

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