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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Stimulation of the D5 dopamine receptor acidifies the lysosomal pH of retinal pigmented epithelial cells and decreases accumulation of autofluorescent photoreceptor debris.
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Stimulation of the D5 dopamine receptor acidifies the lysosomal pH of retinal pigmented epithelial cells and decreases accumulation of autofluorescent photoreceptor debris.

机译:D5多巴胺受体的刺激会酸化视网膜色素上皮细胞的溶酶体pH值,并减少自体荧光受体碎片的积累。

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摘要

Optimal neuronal activity requires that supporting cells provide both efficient nutrient delivery and waste disposal. The incomplete processing of engulfed waste by their lysosomes can lead to accumulation of residual material and compromise their support of neurons. As most degradative lysosomal enzymes function best at an acidic pH, lysosomal alkalinization can impede enzyme activity and increase lipofuscin accumulation. We hypothesize that treatment to reacidify compromised lysosomes can enhance degradation. Here, we demonstrate that degradation of ingested photoreceptor outer segments by retinal pigmented epithelial cells is increased by stimulation of D5 dopamine receptors. D1/D5 receptor agonists reacidified lysosomes in cells alkalinized by chloroquine or tamoxifen, with acidification dependent on protein kinase A. Knockdown with siRNA confirmed acidification was mediated by the D5 receptor. Exposure of cells to outer segments increased lipofuscin-like autofluorescence, but SKF 81297 reduced autofluorescence. Likewise, SKF 81297 increased the activity of lysosomal protease cathepsin D in situ. D5DR stimulation also acidified lysosomes of retinal pigmented epithelial cells from elderly ABCA4(-/-) mice, a model of recessive Stargardt's retinal degeneration. In conclusion, D5 receptor stimulation lowers compromised lysosomal pH, enhancing degradation. The reduced accumulation of lipofuscin-like autofluorescence implies the D5 receptor stimulation may enable cells to better support adjacent neurons.
机译:最佳的神经元活动需要支持细胞同时提供有效的营养输送和废物处理。吞噬废物的溶酶体处理不完全会导致残留物质的积累并损害其对神经元的支持。由于大多数降解的溶酶体酶在酸性pH值下效果最佳,因此溶酶体碱化会阻碍酶的活性并增加脂褐素的积累。我们假设重新酸化受损溶酶体的治疗可以增强降解。在这里,我们证明了视网膜色素上皮细胞摄取的感光外部部分的降解通过D5多巴胺受体的刺激而增加。 D1 / D5受体激动剂可将被氯喹或他莫昔芬碱化的细胞中的溶酶体重新酸化,酸化取决于蛋白激酶A。与siRNA的敲除证实了酸化是由D5受体介导的。细胞暴露于外部片段会增加脂褐素样自发荧光,但SKF 81297会降低自发荧光。同样,SKF 81297增加了溶酶体蛋白酶组织蛋白酶D的原位活性。 D5DR刺激还酸化了老年ABCA4(-/-)小鼠的视网膜色素上皮细胞的溶酶体,这是一种隐性Stargardt视网膜变性的模型。总之,D5受体刺激降低了溶酶体的pH值,增强了降解。脂褐素样自发荧光的积累减少意味着D5受体刺激可能使细胞更好地支持邻近的神经元。

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