Li Wei, Wang Kemin, Tan Weihong, Ma Changbei, Yang Xiaohai
State Key Laboratory of Chemo/Biosensing and Chemometrics, Engineering Center for Biomedicine, College of Chemistry and Chemical Engineering, Hunan University, Changsha 410082, P. R. China.
Analyst. 2007 Feb;132(2):107-13. doi: 10.1039/b614138b. Epub 2006 Nov 27.
Recognition and monitoring proteins in real time and in homogeneous solution has always been a difficult task. Here, we introduce a signal transduction strategy for quick protein recognition and real-time quantitative analysis in homogeneous solutions based on a high-affinity aptamer for protein angiogenin (Ang). The method takes advantage of the sensitive anisotropy signal change of fluorophore-labelled aptamer upon protein/aptamer binding. When the labelled aptamer is bound with its target protein Ang, the increased molecular weight causes the rotational motion of the fluorophore attached to the complex to become much slower. Therefore, increasing the amount of Ang results in a raised anisotropy value of the Ang/aptamer. By monitoring the anisotropy change, we are able to detect the binding events between the aptamer and Ang, and measure Ang concentration quantitatively in homogeneous solutions. This assay is highly selective, with a detection limit of 1 nM of Ang. The dissociation constant of the Ang/aptamer binding is determined in the nanomolar range and changes with increasing salt concentration. One can also use our assay to compare the binding affinities of different ligands for the target molecule. Ang in serum samples of malignant lung cancer was also detected. Efficient protein detection using aptamer-based fluorescence anisotropy measurements is expected to find wide applications in protein monitoring, cancer diagnosis, drug screening and other fields.
实时且在均相溶液中识别和监测蛋白质一直是一项艰巨的任务。在此,我们基于一种针对血管生成素(Ang)的高亲和力适体,引入了一种用于在均相溶液中快速蛋白质识别和实时定量分析的信号转导策略。该方法利用了荧光团标记的适体在与蛋白质/适体结合时敏感的各向异性信号变化。当标记的适体与其靶蛋白Ang结合时,分子量的增加导致附着于复合物上的荧光团的旋转运动变得慢得多。因此,Ang量的增加会导致Ang/适体的各向异性值升高。通过监测各向异性变化,我们能够检测适体与Ang之间的结合事件,并在均相溶液中定量测量Ang浓度。该检测方法具有高度选择性,Ang的检测限为1 nM。Ang/适体结合的解离常数在纳摩尔范围内确定,并随盐浓度的增加而变化。人们还可以使用我们的检测方法比较不同配体对靶分子的结合亲和力。我们还检测了恶性肺癌血清样本中的Ang。利用基于适体的荧光各向异性测量进行高效蛋白质检测有望在蛋白质监测、癌症诊断、药物筛选等领域得到广泛应用。