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Effects of Angiotensin II on Renal Dopamine Metabolism: Synthesis, Release, Catabolism and Turnover

机译:血管紧张素II对肾多巴胺代谢的影响:合成,释放,分解代谢和周转。

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Background/Aims: Dopamine (DA) uptake inhibition in the renal cortex, elicited by angiotensin II (ANG II), is mediated by AT_1 receptors and signals through the phospholipase C pathway and activation of protein kinase C and CaM-klnase II. By this indirect way, ANG II stimulates renal Na~+,K~+-ATPase activity through DA intracellular reduction. In the present work, we continued to study different aspects of renal DA metabolism in DA-ANG II interaction, such as DA synthesis, release, catabolism and turnover. Methods: ANG II effects on DA synthesis, release, catabolism and turnover were measured in samples from the outer renal cortex of Sprague-Dawley rats. Results: ANG II reduced renal aromatic acid decarboxylate activity without affecting basal secretion of DA or its KCI-induced release. Moreover, ANG II enhanced mono-amine oxidase activity without altering catechol-o-methyl transferase activity and increased DA turnover. Conclusion: Current results as well as previous findings show that ANG II modifies DA metabolism in rat renal cortex by reducing DA uptake, decreasing DA synthesis enzyme activity and increasing monoamine oxidase activity, and DA turnover. Together, all these effects may reduce DA accumulation into renal cells and decrease its endogenous content and availability. This would prevent D1 receptor recruitment and stimulation, while diminishing DA inhibition of Na~+,K~+-ATPase activity and stimulating sodium reabsorption.
机译:背景/目的:血管紧张素II(ANG II)引起的肾皮质多巴胺(DA)摄取抑制是由AT_1受体介导的,并通过磷脂酶C途径和蛋白激酶C和CaM-激酶K II的激活而发出信号。通过这种间接方式,ANG II通过DA细胞内还原来刺激肾脏的Na〜+,K〜+ -ATPase活性。在目前的工作中,我们继续研究DA-ANG II相互作用中肾脏DA代谢的不同方面,例如DA的合成,释放,分解代谢和更新。方法:从Sprague-Dawley大鼠的肾外皮质样品中测量ANG II对DA合成,释放,分解代谢和周转的影响。结果:ANG II降低了肾芳香酸脱羧活性,但不影响DA的基础分泌或KCI诱导的释放。此外,ANG II增强了单胺氧化酶的活性,而没有改变儿茶酚-o-甲基转移酶的活性和增加了DA的转换。结论:目前的结果以及先前的发现表明,ANG II通过减少DA摄取,降低DA合成酶活性和增加单胺氧化酶活性以及DA转换来修饰大鼠肾皮质的DA代谢。总之,所有这些作用都可能减少DA积聚到肾细胞中,并降低其内源性含量和利用率。这将阻止D1受体的募集和刺激,同时减少DA对Na〜+,K〜+ -ATPase活性的抑制作用并刺激钠的重吸收。

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