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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Mice lacking G-protein receptor kinase 1 have profoundly slowed recovery of cone-driven retinal responses.
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Mice lacking G-protein receptor kinase 1 have profoundly slowed recovery of cone-driven retinal responses.

机译:缺乏G蛋白受体激酶1的小鼠大大降低了视锥细胞驱动的视网膜反应的恢复。

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摘要

G-Protein receptor kinase 1 (GRK1) ("rhodopsin kinase") is necessary for the inactivation of photoactivated rhodopsin, the light receptor of the G-protein transduction cascade of rod photoreceptors. GRK1 has also been reported to be present in retinal cones in which its function is unknown. To examine the role of GRK1 in retinal cone signaling pathways, we measured in mice having null mutations of GRK1 (GRK1 -/-) cone-driven electroretinographic (ERG) responses, including an a-wave component identified as the field potential generated by suppression of the circulating current of the cone photoreceptors. Dark-adapted GRK1 -/- animals generated cone-driven ERGs having saturating amplitudes and sensitivities in both visible and UV spectral regions similar to those of wild-type (WT) mice. However, after exposure to a bright conditioning flash, the cone-driven ERGs of GRK1 -/- animals recovered 30-50 times more slowly than those of WT mice and similarly slower than the cone-driven ERGs of mice homozygously null for arrestin (Arrestin -/-), whose cone (but not rod) response recoveries were found to be as rapid as those of WT. Our observations argue that GRK1 is essential for normal deactivation of murine cone phototransduction and provide the first functional evidence for a major role of a specific GRK in the inactivation of vertebrate cone phototransduction.
机译:G-蛋白受体激酶1(GRK1)(“视紫红质激酶”)对于灭活杆状感光器G蛋白转导级联的光受体视紫红质是必需的。 GRK1也据报道存在于视网膜锥中,其功能尚不清楚。为了检查GRK1在视网膜视锥细胞信号通路中的作用,我们在具有GRK1(GRK1-/-)视锥细胞驱动的视网膜电图(ERG)反应无效突变的小鼠中进行了测量,其中包括被确认为抑制产生的场电势的a波成分锥感光体的循环电流的变化。适应黑暗的GRK1-/-动物产生的锥细胞驱动的ERG在可见光和紫外光谱区域均具有饱和幅度和敏感性,类似于野生型(WT)小鼠。然而,在暴露于明亮的条件闪光后,GRK1-/-动物的锥体驱动的ERG的恢复速度比野生型小鼠高30-50倍,并且比纯净的抑制蛋白(Arrestin)的小鼠的锥体驱动的ERG慢。 -/-),发现其圆锥(但不是棒)响应恢复与WT一样快。我们的观察结果表明,GRK1对于正常的鼠锥光转导失活是必不可少的,并为特定GRK在脊椎动物锥光导失活中的主要作用提供了第一个功能证据。

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