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Implications of dimeric activation of PDE6 for rod phototransduction

机译:PDE6的二聚体激活对棒光转导的影响

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摘要

We examine the implications of a recent report providing evidence that two transducins must bind to the rod phosphodiesterase to elicit significant hydrolytic activity. To predict the rod photoreceptor's electrical response, we use numerical simulation of the two-dimensional diffusional contact of interacting molecules at the surface of the disc membrane, and then we use the simulated PDE activity as the driving function for the downstream reaction cascade. The results account for a number of aspects of rod phototransduction that have previously been puzzling. For example, they explain the existence of a greater initial delay in rods than in cones. Furthermore, our analysis suggests that the ‘continuous’ noise recorded in rods in darkness is likely to arise from spontaneous activation of individual molecules of PDE at a rate of a few tens per second per rod, probably as a consequence of spontaneous activation of transducins at a rate of thousands per second per rod. Hence, the dimeric activation of PDE in rods provides immunity against spontaneous transducin activation, thereby reducing the continuous noise. Our analysis also provides a coherent quantitative explanation of the amplification underlying the single photon response. Overall, numerical analysis of the dimeric activation of PDE places rod phototransduction in a new light.
机译:我们检查了最新报告的含义,该报告提供了两个转导蛋白必须与杆状磷酸二酯酶结合才能引发明显的水解活性的证据。为了预测棒状光感受器的电响应,我们使用相互作用的分子在圆盘膜表面的二维扩散接触的数值模拟,然后将模拟的PDE活性用作下游反应级联的驱动函数。该结果解释了以前令人费解的棒光电导的许多方面。例如,他们解释了杆中存在比圆锥体更大的初始延迟。此外,我们的分析表明,在黑暗中的棒中记录的“连续”噪声很可能是由单个PDE分子以每棒每秒数十个速率的自发活化引起的,这可能是由于转导蛋白自发激活的结果。每根棒每秒数千个的速率。因此,棒中PDE的二聚体激活提供了针对自发转导蛋白激活的免疫力,从而降低了连续噪音。我们的分析还为单个光子响应背后的扩增提供了连贯的定量解释。总体而言,对PDE的二聚激活的数值分析将杆的光转导置于一个新的角度。

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