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首页> 外文期刊>American Journal of Physiology >The dopamine D 2 receptor is expressed and sensitizes adenylyl cyclase activity in airway smooth muscle
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The dopamine D 2 receptor is expressed and sensitizes adenylyl cyclase activity in airway smooth muscle

机译:多巴胺D 2受体在气道平滑肌中表达并敏化腺苷酸环化酶活性

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Dopamine receptors are G protein-coupled receptors that are divided into two subgroups, "D 1-like" receptors (D 1 and D 5) that couple to the G s protein and "D 2-like" receptors (D 2, D 3, and D 4) that couple to G i. Although inhaled dopamine has been reported to induce bronchodilation in patients with asthma, functional expression of dopamine receptor subtypes has never been described on airway smooth muscle (ASM) cells. Acute activation of G i-coupled receptors inhibits adenylyl cyclase activity and cAMP synthesis, which classically impairs ASM relaxation. In contrast, chronic activation of G i-coupled receptors produces a paradoxical enhancement of adenylyl cyclase activity referred to as het-erologous sensitization. We questioned whether the dopamine D 2-like receptor is expressed on ASM, whether it exhibits classical G i-coupling, and whether it modulates ASM function. We detected the mRNA encoding the dopamine D 2 receptor in total RNA isolated from native human ASM and from cultured human airway smooth muscle (HASM) cells. Immunoblots identified the dopamine D 2 receptor protein in both native human and guinea pig ASM and cultured HASM cells. The dopamine D 2 receptor protein was immu-nohistochemically localized to both human and guinea pig ASM. Acute activation of the dopamine D 2 receptor by quinpirole inhibited forskolin-stimulated adenylyl cyclase activity in HASM cells, which was blocked by the dopamine D 2 receptor antagonist L-741626. In contrast, the chronic pretreatment (1 h) with quinpirole potentiated forskolin-stimulated adenylyl cyclase activity, which was inhibited by L-741626, the phospholipase C inhibitor U73122, or the protein kinase C inhibitor GF109203X. Quinpirole also stimulated inositol phosphate synthesis, which was inhibited by L-741626 or U73122. Chronic pretreatment (1 h) of the guinea pig tracheal rings with quinpirole significantly potentiated forskolin-induced airway relaxation, which was inhibited by L-741626. These results demonstrate that functional dopamine D 2 receptors are expressed on ASM and could be a novel therapeutic target for the relaxation of ASM.
机译:多巴胺受体是G蛋白偶联受体,分为两个亚组,与G s蛋白偶联的“ D 1类”受体(D 1和D 5)和“ D 2类”受体(D 2,D 3)。和D 4)耦合到G i。尽管已报道吸入多巴胺可在哮喘患者中诱导支气管扩张,但从未在气道平滑肌(ASM)细胞上描述多巴胺受体亚型的功能性表达。 G i偶联受体的急性激活抑制了腺苷酸环化酶的活性和cAMP的合成,这通常会损害ASM的松弛。相反,G i偶联受体的慢性活化产生称为异源致敏的腺苷酸环化酶活性的反常增强。我们质疑多巴胺D 2样受体是否在ASM上表达,是否表现出经典的G i偶联以及是否调节ASM功能。我们从分离自天然人ASM和培养的人气道平滑肌(HASM)细胞的总RNA中检测到编码多巴胺D 2受体的mRNA。免疫印迹在天然人和豚鼠ASM和培养的HASM细胞中均鉴定出多巴胺D 2受体蛋白。多巴胺D 2受体蛋白在免疫组织化学上定位于人和豚鼠的ASM。喹吡咯对多巴胺D 2受体的急性激活抑制了HASM细胞中福司柯林刺激的腺苷酸环化酶活性,该活性被多巴胺D 2受体拮抗剂L-741626阻断。相反,用喹吡罗进行的慢性预处理(1 h)增强了福斯科林刺激的腺苷酸环化酶活性,该活性被L-741626,磷脂酶C抑制剂U73122或蛋白激酶C抑制剂GF109203X抑制。喹吡罗还刺激了肌醇磷酸酯的合成,其被L-741626或U73122抑制。用喹吡罗对豚鼠气管环进行的长期预处理(1小时)显着增强了福司可林诱导的气道舒张,这被L-741626抑制。这些结果表明功能性多巴胺D 2受体在ASM上表达,并且可能是ASM松弛的新型治疗靶标。

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