Das Anamika, Forfar Rachel, Ladds Graham, Davey John
Department of Biological Sciences, University of Warwick, Coventry CV4 7AL, UK.
Yeast. 2006 Sep;23(12):889-97. doi: 10.1002/yea.1402.
The biochemical and genetic tractability of yeasts make them ideal hosts for the analysis of signalling from G protein-coupled receptors (GPCRs). Selected modifications to the strains allow the introduction of non-yeast components, while signal-dependent expression of reporter genes provides growth selection or enzyme read-out as assays for signalling. One issue with such systems is reporter expression in the absence of stimulation, usually because of spontaneous activation of intracellular signalling components and/or incomplete repression of the signal-dependent promoter. This limits the difference between reporter activity in the presence and absence of stimulation, often referred to as the signal:background ratio. In an effort to extend the applicability of the yeast system, we generated a Schizosaccharomyces pombe strain containing pheromone-dependent reporters for both growth selection and beta-galactosidase production. Simultaneous use of the two reporters provided several advantages over strains expressing only one reporter, particularly when coupled to the use of a competitive inhibitor of the nutritional reporter. For example, the beta-galactosidase signal:background ratio following stimulation with 10(-6) M P-factor increased from 35 for a strain containing a single lacZ reporter to almost 2500 for the double reporter. The sensitivity of the system was also improved, with higher signal:background ratios allowing detection of lower concentrations of P-factor. Although we have used Sz. pombe and focused on GPCR-based induction of beta-galactosidase, the principles described can be applied to other yeasts, different signalling pathways and alternative reporters.
酵母在生物化学和遗传学方面的易处理性使其成为分析G蛋白偶联受体(GPCR)信号传导的理想宿主。对菌株进行特定修饰可引入非酵母成分,而报告基因的信号依赖性表达则提供生长筛选或酶活性检测作为信号传导分析方法。这类系统存在的一个问题是在无刺激情况下报告基因的表达,这通常是由于细胞内信号传导成分的自发激活和/或信号依赖性启动子的不完全抑制所致。这限制了有刺激和无刺激时报告基因活性的差异,即常说的信号:背景比。为了扩展酵母系统的适用性,我们构建了一种粟酒裂殖酵母菌株,该菌株含有用于生长筛选和β-半乳糖苷酶产生的信息素依赖性报告基因。同时使用这两种报告基因比仅表达一种报告基因的菌株具有多个优势,特别是与营养报告基因的竞争性抑制剂联合使用时。例如,用10^(-6) M P因子刺激后,含有单个lacZ报告基因的菌株的β-半乳糖苷酶信号:背景比从35增加到双报告基因菌株的近2500。该系统的灵敏度也得到了提高,更高的信号:背景比使得能够检测到更低浓度的P因子。尽管我们使用的是粟酒裂殖酵母并专注于基于GPCR诱导β-半乳糖苷酶,但所描述的原理可应用于其他酵母、不同的信号传导途径和替代报告基因。