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琥珀酸存在下尿路上皮细胞和平滑肌细胞中的β3 肾上腺素能受体信号通路。

Beta-3 Adrenoceptor Signaling Pathways in Urothelial and Smooth Muscle Cells in the Presence of Succinate.

机构信息

Lady Davis Research Institute, McGill University, Montreal, Quebec, Canada.

Lady Davis Research Institute, McGill University, Montreal, Quebec, Canada

出版信息

J Pharmacol Exp Ther. 2018 Nov;367(2):252-259. doi: 10.1124/jpet.118.249979. Epub 2018 Aug 13.

Abstract

Succinate, an intermediate metabolite of the Krebs cycle, can alter the metabolomics response to certain drugs and controls an array of molecular responses in the urothelium through activation of its receptor, G-protein coupled receptor 91 (GPR91). Mirabegron, a 3-adrenergic receptor (3-AR) agonist used to treat overactive bladder syndrome (OAB), increases intracellular cAMP in the detrusor smooth muscle cells (SMC), leading to relaxation. We have previously shown that succinate inhibits forskolin-stimulated cAMP production in urothelium. To determine whether succinate interferes with mirabegron-mediated bladder relaxation, we examined their individual and synergistic effect in urothelial-cell and SMC signaling. We first confirmed 3-AR involvement in the mirabegron response by quantifying receptor abundance by immunoblotting in cultured urothelial cells and SMC and cellular localization by immunohistochemistry in rat bladder tissue. Mirabegron increased cAMP levels in SMC but not in urothelial cells, an increase that was inhibited by succinate, suggesting that it impairs cAMP-mediated bladder relaxation by mirabegron. Succinate and mirabegron increased inducible nitric oxide synthesis and nitric oxide secretion only in urothelial cells, suggesting that its release can indirectly induces SMC relaxation. Succinate exposure decreased the expression of 3-AR protein in whole bladder in vivo and in SMC in vitro, indicating that this metabolite may lead to impaired pharmacodynamics of the bladder. Together, our results demonstrate that increased levels of succinate in settings of metabolic stress (e.g., the metabolic syndrome) may lead to impaired mirabegron and 3-AR interaction, inhibition of cAMP production, and ultimately requiring mirabegron dose adjustment for its treatment of OAB related to these conditions.

摘要

琥珀酸是三羧酸循环的中间代谢产物,可通过其受体 G 蛋白偶联受体 91(GPR91)改变某些药物的代谢组学反应,并控制尿路上皮中的一系列分子反应。米拉贝隆是一种用于治疗膀胱过度活动症(OAB)的 3-肾上腺素能受体(3-AR)激动剂,可增加逼尿肌平滑肌细胞(SMC)中的细胞内环磷酸腺苷(cAMP),导致松弛。我们之前已经表明,琥珀酸抑制尿路上皮中的福司可林刺激的 cAMP 产生。为了确定琥珀酸是否会干扰米拉贝隆介导的膀胱松弛,我们研究了它们在尿路上皮细胞和 SMC 信号中的单独和协同作用。我们首先通过免疫印迹在培养的尿路上皮细胞和 SMC 中定量受体丰度,并通过免疫组织化学在大鼠膀胱组织中对受体进行细胞定位,证实了 3-AR 在米拉贝隆反应中的参与。米拉贝隆增加了 SMC 中的 cAMP 水平,但未增加尿路上皮细胞中的 cAMP 水平,而琥珀酸抑制了这种增加,表明它通过抑制 cAMP 介导的膀胱松弛来损害米拉贝隆。琥珀酸和米拉贝隆仅在尿路上皮细胞中增加诱导型一氧化氮合成和一氧化氮分泌,表明其释放可以间接诱导 SMC 松弛。琥珀酸暴露降低了体内整个膀胱和体外 SMC 中 3-AR 蛋白的表达,表明该代谢物可能导致膀胱药效学受损。总之,我们的结果表明,代谢应激(例如代谢综合征)中琥珀酸水平升高可能导致米拉贝隆和 3-AR 相互作用受损,抑制 cAMP 产生,最终需要调整米拉贝隆剂量以治疗与这些情况相关的 OAB。

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