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首页> 外文期刊>Journal of Cell Science >Light-dependent subcellular translocation of G(q)alpha in Drosophila photoreceptors is facilitated by the photoreceptor-specific myosin III NINAC
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Light-dependent subcellular translocation of G(q)alpha in Drosophila photoreceptors is facilitated by the photoreceptor-specific myosin III NINAC

机译:果蝇感光细胞中G(q)alpha的光依赖性亚细胞易位受感光细胞特异性肌球蛋白III NINAC的促进

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摘要

We examine the light-dependent subcellular translocation of the visual G(q)alpha protein between the signaling compartment, the rhabdomere and the cell body in Drosophila photoreceptors. We characterize the translocation of Gqa and provide the first evidence implicating the involvement of the photoreceptor-specific myosin III NINAC in G(q)alpha transport. Translocation of G(q)alpha from the rhabdomere to the cell body is rapid, taking less than 5 minutes. Higher light intensities increased the quantity of G(q)alpha translocated out of the rhabdomeres from 20% to 75%, consistent with a mechanism for light adaptation. We demonstrate that translocation of G(q)(X requires rhodopsin, but none of the known downstream phototransduction components, suggesting that the signaling pathway triggering translocation occurs upstream of G(q)alpha. Finally, we show that ninaC mutants display a significantly reduced rate of G(q)alpha transport from the cell body to the rhabdomere, suggesting that NINAC might function as a light-dependent plus-end motor involved in the transport of G(q)alpha.
机译:我们检查果蝇感光细胞中信号转导室,横纹肌和细胞体之间的视觉G(q)alpha蛋白的光依赖性亚细胞移位。我们表征Gqa的易位,并提供牵连的感光器特定的肌球蛋白III NINAC参与G(q)alpha运输的第一个证据。 G(q)alpha从横纹肌小球到细胞体的快速转移,耗时不到5分钟。较高的光强度使从横纹肌中转移出来的G(q)α的数量从20%增加到75%,这与光适应机制一致。我们证明G(q)(X)的易位需要视紫红质,但没有已知的下游光转导组件,这表明触发易位的信号通路发生在G(q)alpha的上游。最后,我们显示ninaC突变体显示出显着降低G(q)alpha从细胞体到鼠李糖单胞菌的转运速率,表明NINAC可能是参与G(q)alpha转运的光依赖性正电子。

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