State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, PR China; University of Chinese Academy of Sciences, Beijing 100049, PR China.
Anal Chim Acta. 2013 Oct 3;797:89-94. doi: 10.1016/j.aca.2013.08.022. Epub 2013 Aug 19.
A novel label-free fluorescence recovery assay for the sensing of a DNA binding protein has been developed. A transcription factor c-Jun protein, and a 21 base pair duplex DNA containing the c-Jun protein binding site (J-DNA) were selected. J-DNA was mixed with a cationic fluorescent perylene probe (compound 1), and induced aggregation of the probe. Quenching of the probe's fluorescence was observed. However, when c-Jun protein was mixed with the J-DNA, c-Jun bound to the duplex DNA, which reduced the degree of the induced perylene probe aggregation, and a turn on fluorescence signal was observed. The recovered fluorescence intensity was directly related to the amount of c-Jun added. The method is highly selective, six non-DNA binding proteins and one randomly selected 21 base pair duplex DNA (con-1) were tested. No noticeable compound 1 fluorescence recovery was observed. Mutations were also introduced to the c-Jun recognition sequence and much reduced fluorescence recovery was observed. Our assay is label-free, convenient, inexpensive, and fast. It can be used in biomedical research such as high throughput screening of drugs targeted at DNA-binding proteins.
一种用于检测 DNA 结合蛋白的新型无标记荧光恢复分析方法已经被开发出来。选择了转录因子 c-Jun 蛋白和含有 c-Jun 蛋白结合位点的 21 碱基对双链 DNA(J-DNA)。J-DNA 与阳离子荧光苝探针(化合物 1)混合,诱导探针聚集。观察到探针荧光的猝灭。然而,当 c-Jun 蛋白与 J-DNA 混合时,c-Jun 与双链 DNA 结合,这降低了诱导苝探针聚集的程度,观察到荧光信号的开启。恢复的荧光强度与添加的 c-Jun 量直接相关。该方法具有高度选择性,测试了六种非 DNA 结合蛋白和一种随机选择的 21 碱基对双链 DNA(con-1)。没有观察到明显的化合物 1 荧光恢复。还对 c-Jun 识别序列进行了突变,观察到荧光恢复大大降低。我们的测定方法是无标记的、方便的、廉价的和快速的。它可以用于生物医学研究,如针对 DNA 结合蛋白的药物高通量筛选。