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Coordinated control of sensitivity by two splice variants of Gαo in retinal ON bipolar cells

机译:视网膜ON双极细胞中Gαo的两个剪接变体对敏感性的协调控制

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摘要

The high sensitivity of scotopic vision depends on the efficient retinal processing of single photon responses generated by individual rod photoreceptors. At the first synapse in the mammalian retina, rod outputs are pooled by a rod “ON” bipolar cell, which uses a G-protein signaling cascade to enhance the fidelity of the single photon response under conditions where few rods absorb light. Here we show in mouse rod bipolar cells that both splice variants of the Go α subunit, Gαo1 and Gαo2, mediate light responses under the control of mGluR6 receptors, and their coordinated action is critical for maximizing sensitivity. We found that the light response of rod bipolar cells was primarily mediated by Gαo1, but the loss of Gαo2 caused a reduction in the light sensitivity. This reduced sensitivity was not attributable to the reduction in the total number of Go α subunits, or the altered balance of expression levels between the two splice variants. These results indicate that Gαo1 and Gαo2 both mediate a depolarizing light response in rod bipolar cells without occluding each other’s actions, suggesting they might act independently on a common effector. Thus, Gαo2 plays a role in improving the sensitivity of rod bipolar cells through its action with Gαo1. The coordinated action of two splice variants of a single Gα may represent a novel mechanism for the fine control of G-protein activity.
机译:暗视的高灵敏度取决于单个视杆感光器产生的单个光子反应的有效视网膜处理。在哺乳动物视网膜的第一个突触中,杆输出由杆“ ON”双极细胞合并,杆双极细胞使用G蛋白信号级联来增强单个杆在很少杆吸收光的条件下的保真度。在这里,我们在小鼠杆状双极细胞中显示,Goα亚基的两个剪接变体Gαo1和Gαo2在mGluR6受体的控制下介导了光响应,它们的协同作用对于最大化灵敏度至关重要。我们发现杆状双极细胞的光反应主要是由Gαo1介导的,但Gαo2的损失导致光敏感性降低。这种降低的敏感性并非归因于Goα亚基总数的减少,或两个剪接变体之间表达水平平衡的改变。这些结果表明,Gαo1和Gαo2均能在杆状双极细胞中介导去极化光响应,而不会彼此阻碍作用,表明它们可能在共同的效应子上独立发挥作用。因此,Gαo2通过与Gαo1作用而在提高杆状双极细胞的敏感性中起作用。单个Gα的两个剪接变体的协同作用可能代表了精细控制G蛋白活性的新机制。

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