Department of Environmental Health Sciences and the Tulane-Xavier Center for Bioenvironmental Research, Tulane University School of Public Health and Tropical Medicine, New Orleans, LA 70112, USA.
Plasmid. 2010 Mar;63(2):73-8. doi: 10.1016/j.plasmid.2009.11.003. Epub 2009 Dec 3.
Single plasmids designed to express the six human type I steroid hormone receptors and detect signaling activity are described in this report. These stably replicating plasmids reported ligand-induced transcriptional activation via lacZ assays in Baker's yeast (Saccharomyces cerevisiae). The ligand concentrations needed to activate signaling in yeast expressing these plasmids spanned five orders of magnitude as based on comparisons of EC(50) values. Radicicol, a direct inhibitor of heat shock protein 90 (Hsp90) and an indirect inhibitor of steroid hormone receptor signaling, was used to determine the functional utility of this yeast reporter system. The inhibitory effect of radicicol was similar on the signaling of all six steroid hormone receptors and was distinguishable from cytotoxic effects that occurred with higher concentrations. These yeast plasmids provide a high throughput system for comparative assessment of steroid hormone receptor signaling and may be useful in screening for pharmacological or xenobiotic activities.
本报告描述了设计用于表达六种人类 I 型甾体激素受体并检测信号活性的单个质粒。这些稳定复制的质粒通过酵母(酿酒酵母)中的 lacZ 检测报告配体诱导的转录激活。根据 EC50 值的比较,激活在表达这些质粒的酵母中信号所需的配体浓度跨越五个数量级。雷帕霉素,热休克蛋白 90(Hsp90)的直接抑制剂和甾体激素受体信号的间接抑制剂,用于确定该酵母报告系统的功能实用性。雷帕霉素对所有六种甾体激素受体的信号作用相似,与高浓度时发生的细胞毒性作用不同。这些酵母质粒为比较甾体激素受体信号提供了高通量系统,并且可能在筛选药理学或外源性活性方面有用。