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Renal D3 dopamine receptor stimulation induces natriuresis by endothelin B receptor interactions

机译:肾脏D3多巴胺受体刺激通过内皮素B受体相互作用诱导利尿

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摘要

Dopaminergic and endothelin systems participate in the control blood pressure by regulating sodium transport in the renal proximal tubule. Disruption of either the endothelin B receptor (ETB) or D3 dopamine receptor gene in mice produces hypertension. To examine whether these two receptors interact we studied the Wistar–Kyoto (WKY) and spontaneously hypertensive (SHR) rats by selectively infusing reagents into the right kidney of anesthetized rats. The D3 receptor agonist (PD128907) caused natriuresis in WKY rats which was partially blocked by the ETB receptor antagonist. In contrast, PD128907 blunted sodium excretion in the SHRs. We found using laser confocal microscopy that the ETB receptor was mainly located in the cell membrane in control WKY cells. Treatment with the D3 receptor antagonist caused its internalization into intracellular compartments that contained the D3 receptors. Combined use of D3 and ETB antagonists failed to internalize ETB receptors in cells from WKY rats. In contrast in SHR cells, ETB receptors were found mainly in internal compartments under basal condition and thus were likely prevented from interacting with the agonist-stimulated, membrane-bound D3 receptors. Our studies suggest that D3 receptors physically interact with proximal tubule ETB receptors and that the blunted natriuretic effect of dopamine in SHRs may be explained, in part, by abnormal D3/ETB receptor interactions.
机译:多巴胺能和内皮素系统通过调节肾近端小管中的钠转运来参与控制血压。小鼠中内皮素B受体(ETB)或D3多巴胺受体基因的破坏会产生高血压。为了检查这两种受体是否相互作用,我们通过选择性地将试剂注入麻醉大鼠的右肾中研究了Wistar-Kyoto(WKY)和自发性高血压(SHR)大鼠。 D3受体激动剂(PD128907)在WKY大鼠中引起钠尿,其被ETB受体拮抗剂部分阻断。相反,PD128907使SHRs中的钠排泄钝化。我们发现使用激光共聚焦显微镜,ETB受体主要位于对照WKY细胞的细胞膜中。 D3受体拮抗剂的治疗导致其内在化进入包含D3受体的细胞内区室。 D3和ETB拮抗剂的联合使用未能使WKY大鼠细胞中的ETB受体内化。与之相反,在SHR细胞中,ETB受体主要在基础条件下的内部隔室中发现,因此可能被阻止与激动剂刺激的膜结合D3受体相互作用。我们的研究表明,D3受体与近端小管ETB受体发生物理相互作用,并且多巴胺对SHR的促利钠钠作用减弱可能部分是由异常的D3 / ETB受体相互作用引起的。

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