Chen Jun, Zhou Jianhong, Sanders Claire K, Nolan John P, Cai Hong
Biosciences Division, National Flow Cytometry Resource, Los Alamos National Laboratory, Los Alamos, NM 87545, USA.
Anal Biochem. 2009 Jul 1;390(1):29-37. doi: 10.1016/j.ab.2009.03.013. Epub 2009 Mar 17.
Despite the wide acceptance of yeast two-hybrid (Y2H) system for protein-protein interaction analysis and discovery, conventional Y2H assays are not well suited for high-throughput screening of the protein interaction network ("interactome") on a genomic scale due to several limitations, including labor-intensive agar plating and colony selection methods associated with the use of nutrient selection markers, complicated reporter analysis methods associated with the use of LacZ enzyme reporters, and incompatibility of the liquid handling robots. We recently reported a robust liquid culture Y2H system based on quantitative analysis of yeast-enhanced green fluorescent protein (yEGFP) reporters that greatly increased the analysis throughput and compatibility with liquid handling robots. To further advance its utility in high-throughput complementary DNA (cDNA) library screening, we report the development of a novel surface display Y2H (sdY2H) library screening system with uniquely integrated surface display hemagglutination (sdHA) antigen and yEGFP reporters. By introduction of a surface reporter sdHA into the yEGFP-based Y2H system, positive Y2H targets are quickly isolated from library cells by a simple magnetic separation without a large plating effort. Moreover, the simultaneous scoring of multiple reporters, including sdHA, yEGFP, and conventional nutrient markers, greatly increased the specificity of the Y2H assay. The feasibility of the sdY2H assay on large cDNA library screening was demonstrated by the successful recovery of positive P53/T interaction pairs at a target-to-background ratio of 1:1,000,000. Together with the massive parallel DNA sequencing technology, it may provide a powerful proteomic tool for high-throughput interactome mapping on a genomic scale.
尽管酵母双杂交(Y2H)系统在蛋白质-蛋白质相互作用分析和发现方面得到了广泛认可,但传统的Y2H检测方法由于存在一些局限性,并不适合在基因组规模上对蛋白质相互作用网络(“相互作用组”)进行高通量筛选,这些局限性包括与营养选择标记物使用相关的劳动密集型琼脂平板培养和菌落选择方法、与LacZ酶报告基因使用相关的复杂报告基因分析方法以及与液体处理机器人的不兼容性。我们最近报道了一种基于酵母增强型绿色荧光蛋白(yEGFP)报告基因定量分析的强大液体培养Y2H系统,该系统大大提高了分析通量以及与液体处理机器人的兼容性。为了进一步提高其在高通量互补DNA(cDNA)文库筛选中的实用性,我们报告了一种新型表面展示Y2H(sdY2H)文库筛选系统的开发,该系统独特地整合了表面展示血凝素(sdHA)抗原和yEGFP报告基因。通过将表面报告基因sdHA引入基于yEGFP的Y2H系统,阳性Y2H靶点可通过简单的磁分离从文库细胞中快速分离出来,而无需大量的平板培养工作。此外,对包括sdHA、yEGFP和传统营养标记物在内的多个报告基因进行同时评分,大大提高了Y2H检测的特异性。通过以1:1,000,000的靶标与背景比成功回收阳性P53/T相互作用对,证明了sdY2H检测在大型cDNA文库筛选中的可行性。与大规模平行DNA测序技术一起,它可能为在基因组规模上进行高通量相互作用组图谱绘制提供一个强大的蛋白质组学工具。