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Modulation of Phosphodiesterase6 Turnoff during Background Illumination in Mouse Rod Photoreceptors

机译:磷酸二酯酶6的调制在鼠标杆感光器的背景照明过程中关闭。

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摘要

In rod photoreceptors of wild-type mice, background light produces an acceleration of the decay of responses to brief flashes, accompanied by a decrease in the rate-limiting time constant for response decay. In rods in which phosphodiesterase γ (PDEγ) lacks one of its sites of phosphorylation (T35A rods), both the waveform of response decay and the rate-limiting time constant are nearly unaffected by backgrounds. These effects are not the result of the removal of the phosphorylation site per se, because rods lacking both of the phosphorylation sites of PDEγ (T22A/T35A rods) adapt to light in a nearly normal manner. Because PDEγ is one of the proteins of the GTPase activating protein (GAP) complex, our experiments argue for a novel mechanism of photoreceptor light adaptation produced by modulation of GAP-dependent hydrolysis of transducin α GTP. In PDEγ T35A rods, a change in the conformation of the PDEγ subunit may hinder or mask this mechanism, which in mammals appears to be primarily responsible for the quickening of the temporal resolution of the rod response in backgrounds. Modulation of PDE turnoff also helps to prevent premature saturation of the rod in bright backgrounds, thus making an important contribution to light adaptation. Our experiments provide evidence for modulation of GAP protein-dependent response turnoff, which may also play a role in controlling signal duration at hormone receptors and synapses in the CNS.
机译:在野生型小鼠的棒状光感受器中,背景光会加速对短暂闪光的反应衰减,并伴随反应衰减的限速时间常数的减少。在磷酸二酯酶γ(PDEγ)缺少其磷酸化位点之一的棒中(T35A棒),响应衰减的波形和限速时间常数几乎不受背景的影响。这些效果不是去除磷酸化位点本身的结果,因为缺少两个PDEγ磷酸化位点的棒(T22A / T35A棒)几乎以正常方式适应光。由于PDEγ是GTPase活化蛋白(GAP)复合物的一种蛋白,因此我们的实验提出了通过调节转导素αGTP的GAP依赖性水解产生的光感受器光适应的新机制。在PDEγT35A杆中,PDEγ亚基构象的变化可能会阻碍或掩盖这种机制,这在哺乳动物中似乎主要是导致背景中杆响应的时间分辨率加快。 PDE关断的调制还有助于防止杆在明亮的背景下过早饱和,从而为光适应做出了重要贡献。我们的实验提供了调节GAP蛋白依赖性反应关闭的证据,这也可能在控制CNS中激素受体和突触的信号持续时间中发挥作用。

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