Thunemann Martin, Fomin Natalie, Krawutschke Christian, Russwurm Michael, Feil Robert
Interfakultäres Institut für Biochemie, Universität Tübingen, Tübingen, Germany.
Methods Mol Biol. 2013;1020:89-120. doi: 10.1007/978-1-62703-459-3_6.
Cyclic guanosine 3'-5'-monophosphate (cGMP) is an important signaling molecule in physiology, pathophysiology, and pharmacological therapy. It has been proposed that the functional outcome of an increase of cGMP in a given cell largely depends on the existence of global versus local cGMP pools. The recent development of genetically encoded fluorescent biosensors for cGMP is a major technical advance in order to monitor the spatiotemporal dynamics and compartmentalization of cGMP signals in living cells. Here we give an overview of the available cGMP sensors and how they can be used to visualize cGMP. The focus is on the fluorescence resonance energy transfer (FRET)-based cGi-type sensors (Russwurm et al., Biochem J 407:69-77, 2007), which are currently among the most useful tools for cGMP imaging in cells, tissues, and living organisms. We present detailed protocols that cover the entire imaging experiment, from the isolation of primary cells from cGi-transgenic mice and adenoviral expression of cGi sensors to the description of the setup required to record FRET changes in single cells and tissues. In-cell calibration of sensors and data evaluation is also described in detail and the limitations and common pitfalls of cGMP imaging are discussed. Specifically, we outline the use of FRET microscopy to visualize cGMP in murine smooth muscle cells (from aorta, bladder, and colon) and cerebellar granule neurons expressing cGi sensors. Most of the protocols can be easily adapted to other cell types and cGMP indicators and can be used as general guidelines for cGMP imaging in living cells, tissues and, eventually, whole organisms.
环磷酸鸟苷(cGMP)是生理学、病理生理学和药物治疗中一种重要的信号分子。有人提出,给定细胞中cGMP增加的功能结果在很大程度上取决于全局与局部cGMP池的存在。用于cGMP的基因编码荧光生物传感器的最新发展是一项重大技术进步,可用于监测活细胞中cGMP信号的时空动态和区室化。在此,我们概述了现有的cGMP传感器以及如何使用它们来可视化cGMP。重点是基于荧光共振能量转移(FRET)的cGi型传感器(Russwurm等人,《生物化学杂志》407:69 - 77,2007年),目前它们是细胞、组织和活生物体中cGMP成像最有用的工具之一。我们提供了详细的方案,涵盖整个成像实验,从从cGi转基因小鼠中分离原代细胞和cGi传感器的腺病毒表达,到记录单细胞和组织中FRET变化所需设置的描述。还详细描述了传感器的细胞内校准和数据评估,并讨论了cGMP成像的局限性和常见陷阱。具体而言,我们概述了使用FRET显微镜在表达cGi传感器 的小鼠平滑肌细胞(来自主动脉、膀胱和结肠)和小脑颗粒神经元中可视化cGMP。大多数方案可以很容易地适用于其他细胞类型和cGMP指示剂,并可作为活细胞、组织以及最终整个生物体中cGMP成像的一般指南。