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Stimulation of an α1-adrenergic receptor downregulates ecto-5′ nucleotidase activity on the apical membrane of RPE cells

机译:刺激α1-肾上腺素受体下调RPE细胞顶膜上的ecto-5核苷酸酶活性

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摘要

The purines ATP and adenosine play an important role in the communication between the photoreceptors and the retinal pigment epithelium (RPE). While the RPE is known to release ATP into subretinal space, the source of extracellular adenosine is unclear. In other tissues, ecto-nucleotidases mediate the consecutive dephosphorylation of ATP to AMP, and AMP is converted to adenosine by ecto-5′ nucleotidase (CD73). This study identifies ecto-5′ nucleotidase on RPE cells and investigates modulation of enzyme activity. The RPE was the most active site of 5′AMP dephosphorylation in the posterior rat eye. The ecto-5′ nucleotidase inhibitor αβmADP prevented the production adenosine by the apical membrane of the bovine RPE. Cultured human ARPE-19 cells expressed mRNA and protein for ecto-5′ nucleotidase. The production of phosphate from 5′AMP by ARPE-19 cells was inhibited by αβmADP, but the ecto-alkaline phosphatase inhibitor levamisole had no effect. Degradation of 5′AMP was blocked by norepinephrine, epinephrine and phenylephrine, with inhibition by antagonists prazosin and corynanthine implicating the α1 adrenergic receptor. The block of enzyme activity by norepinephrine was rapid, occurring within 1 min, and was similar at both 4 and 37°C, consistent with cleavage of the enzyme from its GPI anchor. HPLC measurements indicated norepinephrine reduced levels of adenosine in the bath. In the apical face of the bovine-RPE eyecup, norepinephrine reduced the production of phosphate from 5′AMP, suggesting that both receptor and enzyme face sub-retinal space. In conclusion, RPE cells express ecto-5′ nucleotidase, with activity on the apical membrane, and stimulation of α-1 adrenergic receptors downregulates activity. As epinephrine is released at light onset, and adenosine can inhibit phagocytosis, the corresponding decrease in subretinal adenosine levels may contribute to the enhanced the phagocytosis of rod outer segments that occurs at this time.
机译:嘌呤ATP和腺苷在感光细胞与视网膜色素上皮(RPE)之间的通讯中起重要作用。尽管已知RPE可以将ATP释放到视网膜下空间,但细胞外腺苷的来源尚不清楚。在其他组织中,外切核苷酸酶介导ATP连续去磷酸化为AMP,而AMP被外切5'核苷酸酶(CD73)转化为腺苷。这项研究确定了RPE细胞上的ecto-5'核苷酸酶,并研究了酶活性的调节。 RPE是大鼠后眼中5'AMP脱磷酸作用最活跃的部位。 ecto-5'核苷酸酶抑制剂αβmADP阻止了牛RPE的顶膜产生腺苷。培养的人类ARPE-19细胞表达ecto-5'核苷酸酶的mRNA和蛋白。 αβmADP抑制了ARPE-19细胞从5'AMP产生的磷酸盐,但胞外碱性磷酸酶抑制剂左旋咪唑没有作用。去甲肾上腺素,肾上腺素和去氧肾上腺素可阻止5'AMP的降解,并受到拮抗剂prazosin和corynanthine的抑制,牵涉到α1肾上腺素受体。去甲肾上腺素对酶活性的阻断是迅速的,发生在1分钟内,并且在4和37°C时都相似,这与酶从其GPI锚上的裂解相一致。 HPLC测量表明去甲肾上腺素降低了浴液中腺苷的水平。在牛RPE眼杯的顶面部,去甲肾上腺素减少了5'AMP产生的磷酸盐,表明受体和酶均面对视网膜下空间。总之,RPE细胞表达ecto-5'核苷酸酶,在顶膜上具有活性,刺激α-1肾上腺素受体会下调活性。由于肾上腺素在发作时被释放,并且腺苷可以抑制吞噬作用,因此视网膜下腺苷水平的相应降低可能有助于此时发生的杆外部节段的吞噬作用增强。

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