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使用邻位连接分析法(PLA)检测骨形态发生蛋白4(Bmp4)下游的信号效应复合物。

Detection of signaling effector-complexes downstream of bmp4 using PLA, a proximity ligation assay.

作者信息

Thymiakou Efstathia, Episkopou Vasso

机构信息

Medical Research Council, Clinical Sciences Centre, Imperial College, Hammersmith Hospital.

出版信息

J Vis Exp. 2011 Mar 3(49):2631. doi: 10.3791/2631.

Abstract

BMPs are responsible for a wide range of developmental and biological effects. BMP receptors activate (phosphorylate) the Smad1/5/8 effectors, which then, form a complex with Smad4 and translocate to the nucleus where they function as transcription factors to initiate BMP specific downstream effects (1). Traditional immuno-fluorescence techniques with antibodies against phospho-Smad peptides exhibit low sensitivity, high background and offer gross quantification as they rely on intensity of the antibody signal particularly if this is photosensitive fluorescent. In addition, phospho-Smads may not all be in complex with Smad4 and engaged in active transcription. In situ PLA is a technology capable of detecting protein interactions with high specificity and sensitivity (2-4). This new technology couples antibody recognition with the amplification of DNA surrogate of the protein. It generates a localized, discrete signal in a form of spots revealing the exact position of the recognition event. The number of signals can be counted and compared providing a measurement. We applied in situ PLA, using the Duolink kit, with a combination of antibodies that allows the detection of the BMP signaling effectors phospho-Smad1/5/8 and Smad4 only when these are in proximity i.e. in a complex, which occurs only with signaling activation. This allowed for the first time, the visualization and measurement of endogenous BMP signaling with high specificity and sensitivity in a time course experiment under BMP4 stimulation.

摘要

骨形态发生蛋白(BMPs)负责多种发育和生物学效应。BMP受体激活(磷酸化)Smad1/5/8效应分子,这些效应分子随后与Smad4形成复合物并转运至细胞核,在细胞核中它们作为转录因子发挥作用,启动BMP特异性的下游效应(1)。传统的针对磷酸化Smad肽段的免疫荧光技术灵敏度低、背景高,且由于依赖抗体信号强度进行大致定量,特别是当该信号为光敏荧光时。此外,磷酸化Smads可能并非都与Smad4形成复合物并参与活性转录。原位邻近连接分析(in situ PLA)是一种能够高特异性和高灵敏度检测蛋白质相互作用的技术(2 - 4)。这项新技术将抗体识别与蛋白质的DNA替代物扩增相结合。它以斑点的形式产生局部的、离散的信号,揭示识别事件的确切位置。信号数量可以计数和比较,从而提供一种测量方法。我们使用Duolink试剂盒进行原位PLA,采用一组抗体,仅当骨形态发生蛋白信号效应分子磷酸化Smad1/5/8和Smad4处于邻近状态(即形成复合物,仅在信号激活时发生)时才能检测到它们。这首次使得在BMP4刺激下的时间进程实验中,能够以高特异性和高灵敏度对内源性BMP信号进行可视化和测量。

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