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斑马鱼视杆细胞中cone-specific G-protein-coupled receptor kinase GRK7 的异位表达导致光敏性降低和反应改变。

Ectopic expression of cone-specific G-protein-coupled receptor kinase GRK7 in zebrafish rods leads to lower photosensitivity and altered responses.

机构信息

Department of Neuroscience, Australian National University, Canberra, ACT 0200, Australia.

出版信息

J Physiol. 2011 May 1;589(Pt 9):2321-48. doi: 10.1113/jphysiol.2010.204156. Epub 2011 Mar 8.

Abstract

To investigate the roles of G-protein receptor kinases (GRKs) in the light responses of vertebrate photoreceptors, we generated transgenic zebrafish lines, the rods of which express either cone GRK (GRK7) or rod GRK (GRK1) in addition to the endogenous GRK1, and we then measured the electrophysiological characteristics of single-cell responses and the behavioural responses of intact animals. Our study establishes the zebrafish expression system as a convenient platform for the investigation of specific components of the phototransduction cascade. The addition of GRK1 led to minor changes in rod responses. However, exogenous GRK7 in GRK7-tg animals led to lowered rod sensitivity, as occurs in cones, but surprisingly to slower response kinetics. Examination of responses to long series of very dim flashes suggested the possibility that the GRK7-tg rods generated two classes of single-photon response, perhaps corresponding to the interaction of activated rhodopsin with GRK1 (giving a standard response) or with GRK7(giving a very small response). Behavioural measurement of optokinetic responses (OKR) in intact GRK7-tg zebrafish larvae showed that the overall rod visual pathway was less sensitive, in accord with the lowered sensitivity of the rods. These results help provide an understanding for the molecular basis of the electrophysiological differences between cones and rods.

摘要

为了研究 G 蛋白偶联受体激酶 (GRKs) 在脊椎动物光感受器光反应中的作用,我们生成了转基因斑马鱼系,其中除了内源性 GRK1 外,棒状细胞还表达了视锥细胞 GRK (GRK7) 或视杆细胞 GRK (GRK1),然后我们测量了单细胞反应的电生理特性和完整动物的行为反应。我们的研究确立了斑马鱼表达系统作为研究光转导级联特定成分的便利平台。GRK1 的添加导致棒状细胞反应的微小变化。然而,GRK7-tg 动物中的外源性 GRK7 导致棒状细胞灵敏度降低,这与视锥细胞类似,但令人惊讶的是反应动力学变慢。对长串非常弱光闪烁的反应的检测表明,GRK7-tg 棒状细胞可能产生两类单光子反应的可能性,可能与激活的视紫红质与 GRK1(产生标准反应)或与 GRK7(产生非常小的反应)的相互作用有关。对完整的 GRK7-tg 斑马鱼幼虫的光运动反应 (OKR) 的行为测量表明,整个棒状细胞视觉通路的灵敏度降低,与棒状细胞的灵敏度降低一致。这些结果有助于为视锥细胞和棒状细胞之间电生理差异的分子基础提供理解。

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