Department of Pharmacology and Experimental Neuroscience, University of Nebraska Medical Center, Nebraska Medical Center, Omaha, Nebraska 69198-5800, USA.
Br J Pharmacol. 2010 Feb;159(4):820-30. doi: 10.1111/j.1476-5381.2009.00584.x. Epub 2010 Jan 28.
The alpha(2C)-adrenoceptor has multiple functions, including inhibiting release of noradrenaline from presynaptic nerve terminals. A human alpha(2C) polymorphism, Del322-325, a potential risk factor for heart failure, has been reported to exhibit reduced signalling in CHO cells. To further understand the role of the Del322-325 polymorphism on receptor signalling, we attempted to replicate and further study the reduced signalling in HEK293 cells.
Human alpha(2C) wild-type (WT) and Del322-325 adrenoceptors were stably transfected into HEK293 cells. Radioligand binding was performed to determine affinities for both receptors. In intact cells, inhibition of forskolin-stimulated cyclic AMP production by WT and Del322-325 clones with a range of receptor densities (200-2320 fmol.mg(-1) protein) was measured following agonist treatment.
Noradrenaline, brimonidine and clonidine exhibited similar binding affinities for WT and Del322-325. Brimonidine and clonidine also had similar efficacies and potencies for both receptors for the inhibition of cyclic AMP production at all receptor densities tested. A linear regression analysis comparing efficacy and potency with receptor expression levels showed no differences in slopes between WT and Del322-325.
The alpha(2C) WT and Del322-325 adrenoceptors exhibited similar binding properties. Additionally, inhibition of cyclic AMP production by Del322-325 was similar to that of WT over a range of receptor densities. Therefore, in intact HEK293 cells, the alpha(2C)-Del322-325 polymorphism does not exhibit reduced signalling to adenylyl cyclase and may not represent a clinically important phenotype.
α2C-肾上腺素受体具有多种功能,包括抑制去甲肾上腺素从突触前神经末梢释放。已报道,人类α2C 多态性 Del322-325 是心力衰竭的潜在危险因素,在 CHO 细胞中表现出信号转导减少。为了进一步了解 Del322-325 多态性对受体信号转导的作用,我们试图在 HEK293 细胞中复制并进一步研究信号转导减少的情况。
将人 α2C 野生型(WT)和 Del322-325 肾上腺素受体稳定转染到 HEK293 细胞中。进行放射性配体结合实验以确定两种受体的亲和力。在完整的细胞中,用一系列受体密度(200-2320 fmol.mg-1 蛋白)的 WT 和 Del322-325 克隆测量激动剂处理后对 forskolin 刺激的环 AMP 产生的抑制作用。
去甲肾上腺素、溴莫尼定和可乐定对 WT 和 Del322-325 的结合亲和力相似。溴莫尼定和可乐定对两种受体的抑制环 AMP 产生的作用也具有相似的效能和效力,在所有测试的受体密度下。比较斜率与受体表达水平的效能和效力的线性回归分析表明,WT 和 Del322-325 之间没有差异。
α2C WT 和 Del322-325 肾上腺素受体表现出相似的结合特性。此外,在一系列受体密度下,Del322-325 对环 AMP 产生的抑制作用与 WT 相似。因此,在完整的 HEK293 细胞中,α2C-Del322-325 多态性不会导致腺苷酸环化酶信号转导减少,可能不是一个具有临床重要意义的表型。