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Real-time visualization of heterotrimeric G protein Gq activation in living cells

机译:实时可视化活细胞中异源三聚体G蛋白Gq的活化

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Background Gq is a heterotrimeric G protein that plays an important role in numerous physiological processes. To delineate the molecular mechanisms and kinetics of signalling through this protein, its activation should be measurable in single living cells. Recently, fluorescence resonance energy transfer ( FRET ) sensors have been developed for this purpose. Results In this paper, we describe the development of an improved FRET -based Gq activity sensor that consists of a yellow fluorescent protein (YFP)-tagged Gγ2 subunit and a Gαq subunit with an inserted monomeric Turquoise (mTurquoise), the best cyan fluorescent protein variant currently available. This sensor enabled us to determine, for the first time, the kon (2/s) of Gq activation. In addition, we found that the guanine nucleotide exchange factor p63RhoGEF has a profound effect on the number of Gq proteins that become active upon stimulation of endogenous histamine H1 receptors. The sensor was also used to measure ligand-independent activation of the histamine H1 receptor (H1R) upon addition of a hypotonic stimulus. Conclusions Our observations reveal that the application of a truncated mTurquoise as donor and a YFP-tagged Gγ2 as acceptor in FRET -based Gq activity sensors substantially improves their dynamic range. This optimization enables the real-time single cell quantification of Gq signalling dynamics, the influence of accessory proteins and allows future drug screening applications by virtue of its sensitivity.
机译:背景Gq是异三聚体G蛋白,在许多生理过程中起着重要作用。为了描述该蛋白信号传导的分子机制和动力学,应该在单个活细胞中测量其激活。最近,已为此目的开发了荧光共振能量转移(FRET)传感器。结果在本文中,我们描述了改进的基于FRET的Gq活性传感器的开发,该传感器由黄色荧光蛋白(YFP)标签的Gγ2亚基和Gαq亚基组成,并插入了最佳的青绿色荧光蛋白单体绿松石(mTurquoise)。当前可用的变体。该传感器使我们能够首次确定Gq激活的k on (2 / s)。此外,我们发现鸟嘌呤核苷酸交换因子p63RhoGEF对内源性组胺H1受体刺激后变得活跃的Gq蛋白的数量具有深远的影响。传感器还用于测量添加低渗刺激后组胺H1受体(H1R)的非配体依赖性活化。结论我们的观察结果表明,在基于FRET的Gq活性传感器中应用截短的mTurquoise作为供体,并使用YFP标记的Gγ2作为受体在很大程度上改善了它们的动态范围。这种优化可以实现Gq信号动力学的实时单细胞定量,辅助蛋白的影响,并且凭借其敏感性,可以用于未来的药物筛选应用。

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