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首页> 外文期刊>American Journal of Physiology >Renal actions of atrial natriuretic peptide in spontaneously hypertensive rats: the role of nitric oxide as a key mediator
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Renal actions of atrial natriuretic peptide in spontaneously hypertensive rats: the role of nitric oxide as a key mediator

机译:心钠素在自发性高血压大鼠中的肾脏作用:一氧化氮作为关键介质的作用

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摘要

Atrial natriuretic peptide (ANP) is an important regulator of blood pressure (BP). One of the mechanisms whereby ANP impacts BP is by stimulation of nitric oxide (NO) production in different tissues involved in BP control. We hypothesized that ANP-stimulated NO is impaired in the kidneys of spontaneously hypertensive rats (SHR) and this contributes to the development and/or maintenance of high levels of BP. We investigated the effects of ANP on the NO system in SHR, studying the changes in renal nitric oxide synthase (NOS) activity and expression in response to peptide infusion, the signaling pathways implicated in the signaling cascade that activates NOS, and identifying the natriuretic peptide receptors (NPR), guanylyl cyclase receptors (NPR-A and NPR-B) and/or NPR-C, and NOS isoforms involved. In vivo, SHR and Wistar-Kyoto rats (WKY) were infused with saline (0.05 ml/min) or ANP (0.2 mug centre dot kg~(-1) centre dot min~(-1)) NOS activity and endothelial (eNOS), neuronal (nNOS), and inducible (iNOS) NOS expression were measured in the renal cortex and medulla. In vitro, ANP-induced renal NOS activity was determined in the presence of iNOS and nNOS inhibitors, NPR-A/B blockers, guanine nucleotide-regulatory (GO protein, and calmodulin inhibitors. Renal NOS activity was higher in SHR than in WKY. ANP increased NOS activity, but activation was lower in SHR than in WKY. ANP had no effect on expression of NOS isoforms. ANP-induced NOS activity was not modified by iNOS and nNOS inhibitors. NPR-A/B blockade blunted NOS stimulation via ANP in kidney. The renal NOS response to ANP was reduced by G_i protein and calmodulin inhibitors. We conclude that ANP interacts with NPR-C, activating Ca-calmodulin eNOS through G_i protein. NOS activation also involves NPR-A/B. The NOS response to ANP was diminished in kidneys of SHR. The impaired NO system response to ANP in SHR participates in the maintenance of high blood pressure.
机译:心钠素(ANP)是血压(BP)的重要调节剂。 ANP影响BP的机制之一是通过刺激参与BP控制的不同组织中一氧化氮(NO)的产生。我们假设自发性高血压大鼠(SHR)的肾脏ANP刺激的一氧化氮受损,这有助于高水平的BP的发展和/或维持。我们研究了ANP对SHR中NO系统的影响,研究了肾脏一氧化氮合酶(NOS)活性和表达对肽输注的响应的变化,涉及激活NOS的信号级联反应中的信号通路,并鉴定了利钠肽受体(NPR),鸟苷酸环化酶受体(NPR-A和NPR-B)和/或NPR-C,以及涉及的NOS亚型。在体内,向SHR和Wistar-Kyoto大鼠(WKY)注入生理盐水(0.05 ml / min)或ANP(0.2杯中心点kg〜(-1)中心点min〜(-1))的NOS活性和内皮(eNOS) ),神经元(nNOS)和诱导型(iNOS)NOS表达在肾皮质和髓质中进行了测量。在体外,在存在iNOS和nNOS抑制剂,NPR-A / B受体阻滞剂,鸟嘌呤核苷酸调节蛋白(GO蛋白)和钙调蛋白抑制剂的情况下,测定了ANP诱导的肾脏NOS活性。SHR的肾脏NOS活性高于WKY。 ANP增加了NOS活性,但SHR中的活化作用低于WKY; ANP对NOS亚型的表达没有影响; iNOS和nNOS抑制剂未改变ANP诱导的NOS活性; NPR-A / B阻断通过ANP抑制了NOS刺激。在肾脏中,G_i蛋白和钙调蛋白抑制剂可降低肾脏对ANP的NOS反应,我们得出结论,ANP与NPR-C相互作用,通过G_i蛋白激活Ca-钙调蛋白eNOS,NOS激活也涉及NPR-A / B。 SHR肾脏中对ANP的抑制作用减弱,SHR中对ANP的NO系统反应受损参与了高血压的维持。

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