Karchugina Sofiia, Chernoff Jonathan
Fox Chase Cancer Center.
Fox Chase Cancer Center;
J Vis Exp. 2018 Oct 20(140):57755. doi: 10.3791/57755.
Regulated protein-protein interactions are a guiding principle for many signaling events, and the detection of such events is an important element in understanding how such pathways are organized and how they function. There are many methods to detect protein-protein interactions in cells, but relatively few can be used to detect interactions between endogenous proteins. One such method, the proximity ligation assay (PLA), has several advantages to recommend its use. Compared to other common methods of protein-protein interaction analysis, PLA has relatively high sensitivity and specificity, can be performed with minimal cell manipulation, and, in the protocol described herein, requires only two target-specific antibodies derived from different species (e.g., from mouse and rabbit) and one specialized reagent: a set of secondary antibodies that are covalently linked to specific oligonucleotides that, when brought in close proximity of one another, create an amplifiable platform for in situ PCR or rolling circle amplification. In this presentation, we show how to apply the PLA technique to visualize changes in MST1 and MST2 proximity in fixed cells. The technique described in this manuscript is particularly applicable for the analysis of cell signaling studies.
受调控的蛋白质-蛋白质相互作用是许多信号事件的指导原则,检测此类事件是理解这些信号通路如何组织以及如何发挥功能的重要环节。细胞中有许多检测蛋白质-蛋白质相互作用的方法,但可用于检测内源性蛋白质之间相互作用的方法相对较少。其中一种方法,即邻近连接分析(PLA),有几个优点值得推荐使用。与其他常见的蛋白质-蛋白质相互作用分析方法相比,PLA具有相对较高的灵敏度和特异性,只需对细胞进行最少的操作即可进行,并且,在本文所述的方案中,仅需要两种源自不同物种(例如,来自小鼠和兔子)的靶标特异性抗体和一种专用试剂:一组与特定寡核苷酸共价连接在一起的二抗,当它们彼此靠近时,会创建一个用于原位PCR或滚环扩增的可扩增平台。在本报告中,我们展示了如何应用PLA技术来可视化固定细胞中MST1和MST2接近度的变化。本手稿中描述的技术特别适用于细胞信号研究分析。