Department of Chemistry, School of Science, The University of Tokyo, 7-3-1 Bunkyo-ku, Hongo, Tokyo 113-0033, Japan.
Anal Chem. 2010 Mar 15;82(6):2552-60. doi: 10.1021/ac100104q.
To identify biologically relevant compounds in basic biology and drug discovery processes, rapid quantitative methods for elucidating protein-protein interactions have become necessary. We describe a novel optical technique for monitoring protein-protein interactions in living cells based on complementation of split luciferase fragments from click beetle (Brazilian Pyrearinus termitilluminans). A new pair of amino-terminal and carboxy-terminal fragments of the luciferase was identified using semirational library screening, demonstrating achieved markedly higher sensitivity and signal-to-background ratio. The identified fragments were applied to the study of five G-protein coupled receptors (GPCR) that interact with beta-arrestin on the plasma membrane. By generating cell lines stably expressing the GPCRs and beta-arrestin connected with the luciferase fragments, we demonstrated rapid and sensitive screening of potential chemicals that act on GPCRs using a 96-well microtiter plate format. The screening time was reduced to 5-10 min after ligand stimulation. The maximum response became more than 15-fold higher than the background signal. This luciferase complementation method also enabled accurate spatial and temporal analyses of interactions in single living cells using bioluminescence microscopy. These GPCR assays will facilitate developments of high-throughput screening systems in a multiwell plate format. Furthermore, using specific proteins of interest, the novel fragments of luciferase will provide different assay methods for the study of many intracellular signals in living cells and animals.
为了在基础生物学和药物发现过程中鉴定具有生物学意义的化合物,阐明蛋白质-蛋白质相互作用的快速定量方法变得非常必要。我们描述了一种基于从叩头虫(巴西 Pyrearinus termitilluminans)中分离的荧光素酶片段互补的新型光学技术,用于监测活细胞中的蛋白质-蛋白质相互作用。使用半理性文库筛选鉴定了新的荧光素酶氨基末端和羧基末端片段,显示出明显更高的灵敏度和信号背景比。鉴定的片段被应用于研究与质膜上β-arrestin 相互作用的五个 G 蛋白偶联受体 (GPCR)。通过生成稳定表达 GPCR 和与荧光素酶片段连接的β-arrestin 的细胞系,我们使用 96 孔微量滴定板格式证明了对作用于 GPCR 的潜在化学物质的快速和敏感筛选。配体刺激后的筛选时间缩短至 5-10 分钟。最大响应比背景信号高 15 倍以上。这种荧光素酶互补方法还可以使用生物发光显微镜对单个活细胞中的相互作用进行准确的时空分析。这些 GPCR 测定法将有助于在多孔板格式中开发高通量筛选系统。此外,使用特定的感兴趣的蛋白质,荧光素酶的新片段将为在活细胞和动物中研究许多细胞内信号提供不同的测定方法。