James P, Halladay J, Craig E A
Department of Biomolecular Chemistry, University of Wisconsin, Madison 53706, USA.
Genetics. 1996 Dec;144(4):1425-36. doi: 10.1093/genetics/144.4.1425.
The two-hybrid system is a powerful technique for detecting protein-protein interactions that utilizes the well-developed molecular genetics of the yeast Saccharomyces cerevisiae. However, the full potential of this technique has not been realized due to limitations imposed by the components available for use in the system. These limitations include unwieldy plasmid vectors, incomplete or poorly designed two-hybrid libraries, and host strains that result in the selection of large numbers of false positives. We have used a novel multienzyme approach to generate a set of highly representative genomic libraries from S. cerevisiae. In addition, a unique host strain was created that contains three easily assayed reporter genes, each under the control of a different inducible promoter. This host strain is extremely sensitive to weak interactions and eliminates nearly all false positives using simple plate assays. Improved vectors were also constructed that simplify the construction of the gene fusions necessary for the two-hybrid system. Our analysis indicates that the libraries and host strain provide significant improvements in both the number of interacting clones identified and the efficiency of two-hybrid selections.
双杂交系统是一种强大的检测蛋白质-蛋白质相互作用的技术,它利用了酿酒酵母完善的分子遗传学。然而,由于该系统中可用组件的限制,这项技术的全部潜力尚未实现。这些限制包括笨重的质粒载体、不完整或设计不佳的双杂交文库,以及导致大量假阳性筛选结果的宿主菌株。我们采用了一种新颖的多酶方法,从酿酒酵母中生成了一组具有高度代表性的基因组文库。此外,还创建了一种独特的宿主菌株,它包含三个易于检测的报告基因,每个报告基因都受不同诱导型启动子的控制。这种宿主菌株对弱相互作用极其敏感,通过简单的平板检测几乎消除了所有假阳性。还构建了改进的载体,简化了双杂交系统所需基因融合体的构建。我们的分析表明,这些文库和宿主菌株在鉴定出的相互作用克隆数量和双杂交筛选效率方面都有显著提高。