Yang S, Yang Y, Yu P, Yang J, Jiang X, Villar V A M, Sibley D R, Jose P A, Zeng C
Department of Cardiology, Daping Hospital, The Third Military Medical University , Chongqing , P. R. China.
Free Radic Res. 2015 Apr;49(4):397-410. doi: 10.3109/10715762.2015.1006215. Epub 2015 Mar 5.
The renal dopaminergic system plays an important role in the pathogenesis of hypertension. Dopamine D1-like receptors (D1R and D5R) decrease reactive oxygen species (ROS) production via inhibition of pro-oxidant enzymes such as NADPH oxidase. Paraoxonase 2 (PON2) is also involved in the inhibition of NADPH oxidase activity. Therefore, we tested the hypothesis that D1R and D5R inhibit ROS production by increasing the expression of PON2, including those in membrane microdomains.
PON2 colocalized with D1R and D5R in mouse renal proximal tubules (RPTs), human RPT (hRPT) cells, and HEK293 cells heterologously expressing human D1R (HEK-hD1R) or D5R (HEK-hD5R). Fenoldopam, an agonist for both D1R and D5R, increased PON2 co-immunoprecipitation with D1R and D5R in HEK-hD1R and HEK-hD5R cells, respectively. Silencing PON2 increased ROS production and NADPH oxidase activity, and impaired the inhibitory effect of fenoldopam. Fenoldopam increased PON2 protein in both lipid rafts (LRs) and non-LRs in HEK-hD1R cells, but only in non-LRs in HEK-hD5R and hRPT cells. Long-term (hrs) fenoldopam stimulation increased PON2 protein in a time-dependent manner in HEK-hD5R, but not in HEK-hD1R cells. Because the effects of fenoldopam on non-LR and total PON2 expressions were similar in HEK-hD5R and hRPT cells, additional studies were performed to determine the relationship between D5R and PON2. Renal PON2 protein was decreased in D5(-/-) mice. In hRPT cells, silencing D5R decreased PON2 expression and increased ROS production.
We conclude that D1-like receptors inhibit ROS production by altering PON2 distribution in membrane microdomains in the short-term, and by increasing PON2 expression in the long-term.
肾多巴胺能系统在高血压发病机制中起重要作用。多巴胺D1样受体(D1R和D5R)通过抑制如NADPH氧化酶等促氧化酶来减少活性氧(ROS)的产生。对氧磷酶2(PON2)也参与抑制NADPH氧化酶活性。因此,我们检验了以下假设:D1R和D5R通过增加PON2的表达(包括膜微区中的PON2表达)来抑制ROS的产生。
在小鼠肾近端小管(RPTs)、人RPT(hRPT)细胞以及异源表达人D1R(HEK-hD1R)或D5R(HEK-hD5R)的HEK293细胞中,PON2与D1R和D5R共定位。非诺多泮是D1R和D5R的激动剂,分别增加了HEK-hD1R和HEK-hD5R细胞中PON2与D1R和D5R的共免疫沉淀。沉默PON2会增加ROS的产生和NADPH氧化酶活性,并削弱非诺多泮的抑制作用。非诺多泮增加了HEK-hD1R细胞脂筏(LRs)和非脂筏中PON2蛋白的表达,但仅增加了HEK-hD5R和hRPT细胞非脂筏中PON2蛋白的表达。长期(数小时)非诺多泮刺激使HEK-hD5R细胞中PON2蛋白呈时间依赖性增加,但在HEK-hD1R细胞中未增加。由于非诺多泮对HEK-hD5R和hRPT细胞中非脂筏和总PON2表达的影响相似,因此进行了额外研究以确定D5R与PON2之间的关系。D5(-/-)小鼠肾PON2蛋白减少。在hRPT细胞中,沉默D5R会降低PON2表达并增加ROS产生。
我们得出结论,D1样受体在短期内通过改变膜微区中PON2的分布,在长期内通过增加PON2表达来抑制ROS的产生。