Leskinen P, Virta M, Karp M
University of Turku, Department of Biotechnology, Turku, Finland.
Yeast. 2003 Oct 15;20(13):1109-13. doi: 10.1002/yea.1024.
Firefly luciferase is often used as a sensitive genetic reporter in various cell types. The pitfall in yeast, however, has been the need to break down the rigid cells in order to measure the enzyme activity. In this study we have removed the peroxisomal targeting codons from the Photinus pyralis luciferase gene (luc) and shown that in the yeast Saccharomyces cerevisiae this modified luciferase gives high levels of light emission that is easy to measure from intact living cells. Furthermore, cells with the modified luciferase grew essentially faster than those with the wild-type luciferase, indicating that peroxisomal targeting of a foreign enzyme puts some constraints to cellular viability. As a model system we used two different reporter constructs. In the first, expression of the luciferase gene is under control of CUP1-promoter, a well known yeast promoter that is inducible by copper ions. In the second, luciferase activity is dependent on activation of the human oestrogen receptor and its interaction with oestrogen-responsive elements incorporated in a yeast promoter. The luciferase activity measurement could be done on a 96-well plate by simple addition of the substrate, D-luciferin, at a moderately acidic pH of 5.0. The ease of use of the non-peroxisomal luciferase makes it an interesting alternative for reporter genes that are conventionally used in yeast, such as lacZ.
萤火虫荧光素酶常用于多种细胞类型中作为灵敏的遗传报告基因。然而,在酵母中存在的问题是,为了测量酶活性,需要破坏坚硬的细胞。在本研究中,我们去除了萤火虫荧光素酶基因(luc)中的过氧化物酶体靶向密码子,并表明在酿酒酵母中,这种修饰后的荧光素酶能产生高水平的发光,且易于从完整的活细胞中测量。此外,含有修饰后荧光素酶的细胞生长速度基本上比含有野生型荧光素酶的细胞快,这表明外来酶的过氧化物酶体靶向对细胞活力存在一些限制。作为一个模型系统,我们使用了两种不同的报告构建体。第一种构建体中,荧光素酶基因的表达受CUP1启动子控制,CUP1启动子是一种著名的酵母启动子,可被铜离子诱导。第二种构建体中,荧光素酶活性依赖于人类雌激素受体的激活及其与整合在酵母启动子中的雌激素反应元件的相互作用。通过在pH为5.0的适度酸性条件下简单添加底物D - 荧光素,就可以在96孔板上进行荧光素酶活性测量。非过氧化物酶体荧光素酶的易用性使其成为酵母中传统使用的报告基因(如lacZ)的一个有趣替代物。