Wang Li, Carnegie Graeme K
Department of Pharmacology, University of Illinois at Chicago, USA.
J Vis Exp. 2013 Aug 15(78):50529. doi: 10.3791/50529.
Among methods to study protein-protein interaction inside cells, Bimolecular Fluorescence Complementation (BiFC) is relatively simple and sensitive. BiFC is based on the production of fluorescence using two non-fluorescent fragments of a fluorescent protein (Venus, a Yellow Fluorescent Protein variant, is used here). Non-fluorescent Venus fragments (VN and VC) are fused to two interacting proteins (in this case, AKAP-Lbc and PDE4D3), yielding fluorescence due to VN-AKAP-Lbc-VC-PDE4D3 interaction and the formation of a functional fluorescent protein inside cells. BiFC provides information on the subcellular localization of protein complexes and the strength of protein interactions based on fluorescence intensity. However, BiFC analysis using microscopy to quantify the strength of protein-protein interaction is time-consuming and somewhat subjective due to heterogeneity in protein expression and interaction. By coupling flow cytometric analysis with BiFC methodology, the fluorescent BiFC protein-protein interaction signal can be accurately measured for a large quantity of cells in a short time. Here, we demonstrate an application of this methodology to map regions in PDE4D3 that are required for the interaction with AKAP-Lbc. This high throughput methodology can be applied to screening factors that regulate protein-protein interaction.
在研究细胞内蛋白质-蛋白质相互作用的方法中,双分子荧光互补(BiFC)相对简单且灵敏。BiFC基于利用荧光蛋白的两个无荧光片段产生荧光(此处使用的是黄色荧光蛋白变体金星)。无荧光的金星片段(VN和VC)与两种相互作用的蛋白质(在这种情况下是AKAP-Lbc和PDE4D3)融合,由于VN-AKAP-Lbc-VC-PDE4D3相互作用以及细胞内功能性荧光蛋白的形成而产生荧光。BiFC基于荧光强度提供有关蛋白质复合物亚细胞定位和蛋白质相互作用强度的信息。然而,使用显微镜进行BiFC分析以量化蛋白质-蛋白质相互作用的强度既耗时又有些主观,因为蛋白质表达和相互作用存在异质性。通过将流式细胞术分析与BiFC方法相结合,可以在短时间内对大量细胞准确测量荧光BiFC蛋白质-蛋白质相互作用信号。在此,我们展示了该方法在绘制PDE4D3中与AKAP-Lbc相互作用所需区域方面的应用。这种高通量方法可用于筛选调节蛋白质-蛋白质相互作用的因子。