Expression of functional muscarinic acetylcholine receptor subtypes in human corpus cavernosum and in cultured smooth muscle cells.

Receptor Pub Date : 1995-01-01
A M Traish, M S Palmer, I Goldstein, R B Moreland
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Abstract

Relaxation of the trabecular smooth muscle, which is necessary for penile erection, is controlled locally by neurotransmitters and vasoactive agents. The goal of this study was to identify and characterize muscarinic acetylcholine receptor (mAChR) subtypes expressed in cultured human corpus cavernosum smooth muscle cells (HCC SMC). Binding analysis with L-[benzilic-4,4'-3H(N)]quinuclidinyl benzilate ([3H]QNB) demonstrated the expression of specific muscarinic receptor binding sites in HCC SMC. Analysis of total RNA isolated from whole corpus cavernosum tissue and smooth muscle cells, by RNase protection assays, demonstrated the expression of mRNA transcripts for m1, m2, m3, and m4 mAChR subtypes in whole tissue and m2 and m4 subtypes in cultured cells. In situ hybridization with specific m2 and m4 probes further confirmed the expression of m2 and m4 mRNA transcripts in cultured cells. Carbachol (CCh), a nonselective cholinergic agonist, inhibited cAMP synthesis at low concentrations (0.1-1 microM) and stimulated cAMP synthesis at high concentrations (100 microM), in cultured HCC SMC. CCh (100 microM) further augmented forskolin (FSK), isoproterenol (ISO), and prostaglandin E1 (PGE1)-induced cAMP synthesis. These observations suggest that, in vivo, in HCC, ACh may activate m3 mAChR subtypes on endothelial cells or m2 and m4 subtypes on the SMC. Although m2 and m4 are thought to inhibit adenylate cyclase (AC), the augmentation of cAMP synthesis by high concentrations of CCh in SMC suggests an alternative mechanism of coupling to G-proteins that stimulates AC activity. These studies show that HCC tissue expresses different subtypes of mAChR (m1, m2, m3, and m4), whereas cultured HCC SMC express m2 and m4 subtypes. It is suggested that m2 and m4 receptor subtypes may play an important role in maintaining trabecular smooth muscle tone in vivo. The augmentation of FSK-, ISO, and PGE1-induced cAMP synthesis by CCh suggests possible development of a multidrug therapeutic approach to treatment of erectile dysfunction.

功能性毒蕈碱类乙酰胆碱受体亚型在人海绵体和培养平滑肌细胞中的表达。
小梁平滑肌的松弛是阴茎勃起所必需的,局部由神经递质和血管活性药物控制。本研究的目的是鉴定和表征在培养的人海绵体平滑肌细胞(HCC SMC)中表达的毒蕈碱乙酰胆碱受体(mAChR)亚型。与L-[苄基-4,4′-3H(N)]喹啉基苄基酸酯([3H]QNB)的结合分析表明,在HCC SMC中表达特异性毒蕈碱受体结合位点。通过RNase保护实验,对海绵体组织和平滑肌细胞分离的总RNA进行分析,发现在整个组织中有m1、m2、m3和m4型的mRNA转录物表达,在培养细胞中有m2和m4型的mRNA转录物表达。特异性m2和m4探针的原位杂交进一步证实了m2和m4 mRNA转录物在培养细胞中的表达。Carbachol (CCh)是一种非选择性胆碱能激动剂,在培养的HCC SMC中,低浓度(0.1-1微米)抑制cAMP合成,高浓度(100微米)刺激cAMP合成。CCh(100微米)进一步增强福斯克林(FSK)、异丙肾上腺素(ISO)和前列腺素E1 (PGE1)诱导的cAMP合成。这些观察结果表明,在体内,在HCC中,ACh可能激活内皮细胞上的m3 mAChR亚型或SMC上的m2和m4亚型。尽管m2和m4被认为抑制腺苷酸环化酶(AC), SMC中高浓度的CCh增加cAMP的合成表明了与g蛋白偶联刺激AC活性的另一种机制。这些研究表明,HCC组织表达不同亚型的mAChR (m1、m2、m3和m4),而培养的HCC SMC表达m2和m4亚型。提示m2和m4受体亚型可能在维持小梁平滑肌张力中发挥重要作用。CCh增加了FSK-、ISO和pge1诱导的cAMP合成,这表明可能发展出一种多药物治疗方法来治疗勃起功能障碍。
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