UNM Center for Molecular Discovery, University of New Mexico School of Medicine, Albuquerque, New Mexico 87131, USA.
Cytometry A. 2013 Feb;83(2):220-6. doi: 10.1002/cyto.a.22242. Epub 2013 Jan 9.
Monitoring the trafficking of multiple proteins simultaneously in live cells is of great interest because many receptor proteins are found to function together with others in the same cell. However, existing fluorescent labeling techniques have restricted the mechanistic study of functional receptor pairs. We have expanded a hybrid system combining fluorogen-activating protein (FAP) technology and high-throughput flow cytometry to a new type of biosensor that is robust, sensitive, and versatile. This provides the opportunity to study multiple trafficking proteins in the same cell. Human beta2 adrenergic receptor (β2AR) fused with FAP AM2.2 and murine C-C chemokines receptor type 5 fused with FAP MG13 was chosen for our model system. The function of the receptor and the binding between MG13 and fluorogen MG-2p have been characterized by flow cytometry and confocal microscopy assays. The binding of fluorogen and the FAP pair is highly specific, while both FAP-tagged fusion proteins function similarly to their wild-type counterparts. The system has successfully served as a counter screen assay to eliminate false positive compounds identified in a screen against NIH Molecular Libraries Small Molecule Repository targeting regulators of the human β2AR.
同时监测活细胞中多种蛋白质的转运非常有趣,因为许多受体蛋白被发现与同一细胞中的其他蛋白一起发挥作用。然而,现有的荧光标记技术限制了对功能性受体对的机制研究。我们已经将结合了荧光蛋白激活蛋白(FAP)技术和高通量流式细胞术的混合系统扩展到一种新的生物传感器,该传感器具有稳健、灵敏和多功能的特点。这为研究同一细胞中的多种转运蛋白提供了机会。我们选择与人β2 肾上腺素能受体(β2AR)融合的 FAP AM2.2 和与人 C-C 趋化因子受体 5 融合的 FAP MG13 作为我们的模型系统。通过流式细胞术和共聚焦显微镜检测,对受体功能以及 MG13 与荧光素 MG-2p 之间的结合进行了表征。荧光素与 FAP 对的结合具有高度特异性,而两种 FAP 标记的融合蛋白的功能与它们的野生型对应物相似。该系统已成功用作对照筛选测定,以消除针对人类β2AR 调节剂的 NIH 分子库小分子库筛选中鉴定的假阳性化合物。