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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Localization of type I inositol 1,4,5-triphosphate receptor in the outer segments of mammalian cones.
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Localization of type I inositol 1,4,5-triphosphate receptor in the outer segments of mammalian cones.

机译:I型肌醇1,4,5-三磷酸受体在哺乳动物视锥细胞外段的定位。

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摘要

Calcium enters the outer segment of a vertebrate photoreceptor through a cGMP-gated channel and is extruded via a Na/Ca, K exchanger. We have identified another element in mammalian cones that might help to control cytoplasmic calcium. Reverse transcription-PCR performed on isolated photoreceptors identified mRNA for the SII- splice variant of the type I receptor for inositol 1,4,5-triphosphate (IP3), and Western blots showed that the protein also is expressed in outer segments. Immunocytochemistry showed type I IP3 receptor to be abundant in red-sensitive and green-sensitive cones of the trichromatic monkey retina, but it was negative or weakly expressed in blue-sensitive cones and rods. Similarly, the green-sensitive cones expressed the receptor in dichromatic retina (cat, rabbit, and rat), but the blue-sensitive cones did not. Immunostain was localized to disk and plasma membranes on the cytoplasmic face. To restore sensitivity after a light flash, cytoplasmic cGMP must rise to its basal level, and this requires cytoplasmic calcium to fall. Cessation of calcium release via the IP3 receptor might accelerate this fall and thus explain why the cone recovers much faster than the rod. Furthermore, because its own activity of the IP3 receptor depends partly on cytoplasmic calcium, the receptor might control the set point of cytoplasmic calcium and thus affect cone sensitivity.
机译:钙通过cGMP门控通道进入脊椎动物感光体的外部,并通过Na / Ca,K交换器挤出。我们在哺乳动物视锥细胞中发现了另一种可能有助于控制细胞质钙的元素。对分离的感光体进行的逆转录-PCR鉴定为肌醇1,4,5-三磷酸(IP3)的I型受体的SII-剪接变体的mRNA,Western印迹显示该蛋白也在外部片段中表达。免疫细胞化学分析显示,I型IP3受体在三色猴视网膜的红色敏感和绿色敏感视锥细胞中含量丰富,但在蓝色敏感视锥和视杆中呈阴性或弱表达。同样,绿色敏感锥体在双色视网膜(猫,兔子和大鼠)中表达受体,而蓝色敏感锥体则没有。免疫染色定位于细胞质面上的磁盘和质膜。为了在闪动后恢复灵敏度,细胞质cGMP必须升高至其基础水平,这需要细胞质钙下降。经由IP3受体释放钙的停止可能会在今年秋天加速,因此可以解释为什么圆锥体恢复得比杆更快。此外,由于IP3受体自身的活性部分取决于细胞质钙,因此该受体可能控制细胞质钙的设定点,从而影响视锥细胞的敏感性。

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