Gallo Eugenio, Jarvik Jonathan
Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, PA, 15213, USA,
Mol Biotechnol. 2014 Jul;56(7):585-90. doi: 10.1007/s12033-014-9732-6.
Fluorescence biosensors are indispensable tools for understanding protein behavior and function in cells. Recent advancements utilize fluorogen-activating-proteins (FAPs) that form complexes with small organic molecules (fluorogens) and result in their fluorescence activation. The technology has found multiple uses in protein discovery applications; however, the current method of detection requires the expression of FAPs as gene fusion tags in cells-a process that is time- and labor-intensive. In this report, we present an alternate method that utilizes FAPs as affinity reagents. Accordingly, we isolated soluble reagents based on FAP fusions with streptavidin (Strep) or avidin proteins, both highly selective for biotin. When tested in vitro, the reagents displayed bi-functional activity, fluorogen activation, and biotin affinity. For live-cell protein discovery, surface targets were biotinylated via biotin-tagged immunoglobulins or a genetically encoded biotin acceptor peptide. As a result, when the cells were labeled with FAP-Strep or FAP-avidin reagent, the in vivo fluorescence measurements indicated high target specificity, minimal background, and bright signal detection. In summary, we present a novel FAP reagent platform that offers a rapid and efficient approach for cell surface protein detection.
荧光生物传感器是了解细胞中蛋白质行为和功能不可或缺的工具。最近的进展利用了与小分子有机化合物(荧光团)形成复合物并导致其荧光激活的荧光团激活蛋白(FAP)。该技术已在蛋白质发现应用中得到多种用途;然而,目前的检测方法需要在细胞中表达作为基因融合标签的FAP,这一过程既耗时又费力。在本报告中,我们提出了一种利用FAP作为亲和试剂的替代方法。因此,我们基于与链霉亲和素(Strep)或抗生物素蛋白的FAP融合物分离出了可溶性试剂,这两种蛋白对生物素都具有高度选择性。在体外测试时,这些试剂表现出双功能活性、荧光团激活和生物素亲和力。对于活细胞蛋白质发现,通过生物素标记的免疫球蛋白或基因编码的生物素受体肽对表面靶点进行生物素化。结果,当用FAP-Strep或FAP-抗生物素蛋白试剂标记细胞时,体内荧光测量表明具有高靶点特异性、最小背景和明亮的信号检测。总之,我们提出了一种新型的FAP试剂平台,为细胞表面蛋白质检测提供了一种快速有效的方法。