Tanigawa Kiyoshi, Tanaka Katsunao, Nagase Hideki, Miyake Hidekazu, Kiniwa Mamoru, Ikizawa Koichi
Pharmacobioregulation Research Laboratory, Taiho Pharmaceutical Co, Ltd, Hanno, Saitama, Japan.
Biol Pharm Bull. 2002 Dec;25(12):1619-22. doi: 10.1248/bpb.25.1619.
The glucocorticoid receptor regulates gene expression mainly by two mechanisms; transactivation and trans-repression. A ligand with strong transrepression and weak transactivation activity is predicted to be a beneficial agent with potent anti-inflammatory activity and minor adverse effects. Recently, the profile of a synthetic steroid, RU24858, has been reported to fulfill this condition in vitro, but others have reported no dissociation between the anti-inflammatory activity and side effects in vivo. To gain further information on the profile of this compound, we evaluated its transactivation ability using a reporter gene analysis both in vitro and in vivo. In the in vitro analysis, RU24858 demonstrated only a weak transactivation activity in HeLa cells, when compared with prednisolone. In CV-1 cells, however, these two glucocorticoids exhibited equivalent transactivation activities. This behavior is independent of whether the reporter gene is regulated by mouse mammary tumor virus promoter or multiple copies of glucocorticoid response element. When the reporter plasmid was inoculated into mouse abdominal skin using a gene gun, followed by orally administration of glucocorticoids, RU24858 induced significantly higher reporter enzyme activity than prednisolone. These results suggest that the profile of RU24858 is divergent and its transactivation ability is comparable to prednisolone depending on the cell-type both in vitro and in vivo.
反式激活和顺式阻遏。一种具有强顺式阻遏活性和弱反式激活活性的配体有望成为一种具有强大抗炎活性且副作用较小的有益药物。最近,有报道称合成类固醇RU24858在体外符合这一条件,但也有其他人报道其在体内抗炎活性和副作用之间并无分离现象。为了获取有关该化合物特性的更多信息,我们在体外和体内使用报告基因分析评估了其反式激活能力。在体外分析中,与泼尼松龙相比,RU24858在HeLa细胞中仅表现出较弱的反式激活活性。然而,在CV - 1细胞中,这两种糖皮质激素表现出相当的反式激活活性。这种行为与报告基因是由小鼠乳腺肿瘤病毒启动子还是多个糖皮质激素反应元件调控无关。当使用基因枪将报告质粒接种到小鼠腹部皮肤中,随后口服糖皮质激素时,RU24858诱导的报告酶活性显著高于泼尼松龙。这些结果表明,RU24858的特性存在差异,并且其反式激活能力在体外和体内均取决于细胞类型,与泼尼松龙相当。