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Highly effective phosphorylation by G protein-coupled receptor kinase 7 of light-activated visual pigment in cones

机译:G蛋白偶联受体激酶7对视锥细胞中光活化视觉色素的高效磷酸化作用

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摘要

Cone photoreceptors show briefer photoresponses than rod photoreceptors. Our previous study showed that visual pigment phosphorylation, a quenching mechanism of light-activated visual pigment, is much more rapid in cones than in rods. Here, we measured the early time course of this rapid phosphorylation with good time resolution and directly compared it with the photoresponse time course in cones. At the time of photoresponse recovery, almost two phosphates were incorporated into a bleached cone pigment molecule, which indicated that the visual pigment phosphorylation coincides with the photoresponse recovery. The rapid phosphorylation in cones is attributed to very high activity of visual pigment kinase [G protein-coupled receptor kinase (GRK) 7] in cones. Because of this high activity, cone pigment is readily phosphorylated at very high bleach levels, which probably explains why cone photoresponses recover quickly even after a very bright light and do not saturate under intense background light. The high GRK7 activity is brought about by high content of a highly potent enzyme. The expression level of GRK7 was 10 times higher than that of rod kinase (GRK1), and the specific activity of a single GRK7 molecule was approximate to 10 times higher than that of GRK1. The specific activity of GRK7 is the highest among the GRKs so far known. Our result seems to explain the response characteristics of cone photoreceptors in many aspects, including the nonsaturation of the cone responses during daylight vision.
机译:圆锥形感光体显示出比棒状感光体更短的感光度。我们以前的研究表明,视觉色素的磷酸化是光活化视觉色素的淬灭机制,在视锥细胞中比在视杆中要快得多。在这里,我们以良好的时间分辨率测量了这种快速磷酸化的早期时间过程,并将其与视锥细胞中的光响应时间过程进行了直接比较。在光响应恢复时,将几乎两种磷酸酯掺入漂白的锥状色素分子中,这表明视觉色素的磷酸化与光响应的恢复相吻合。视锥细胞中的快速磷酸化归因于视锥细胞中视觉色素激酶[G蛋白偶联受体激酶(GRK)7]的极高活性。由于这种高活性,视锥色素在很高的漂白水平下很容易被磷酸化,这也许可以解释为什么视锥光反应即使在非常明亮的光线下也能迅速恢复,而在强烈的背景光下不会饱和。高GRK7活性是由高含量的高效酶引起的。 GRK7的表达水平比棒激酶(GRK1)高10倍,单个GRK7分子的比活性约比GRK1高10倍。迄今为止,GRK7的比活是最高的。我们的结果似乎可以在许多方面解释视锥细胞感光器的响应特性,包括在日光下视锥细胞响应的不饱和状态。

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