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表达用于环磷酸腺苷(cAMP)动力学体内成像的基于荧光共振能量转移(FRET)传感器的转基因果蝇。

Transgenic fruit-flies expressing a FRET-based sensor for in vivo imaging of cAMP dynamics.

作者信息

Lissandron Valentina, Rossetto Maria Giovanna, Erbguth Karen, Fiala André, Daga Andrea, Zaccolo Manuela

机构信息

Dulbecco Telethon Institute at the Venetian Institute of Molecular Medicine, via Orus 2, Padova, Italy.

出版信息

Cell Signal. 2007 Nov;19(11):2296-303. doi: 10.1016/j.cellsig.2007.07.004. Epub 2007 Jul 12.

Abstract

3'-5'-cyclic adenosine monophosphate (cAMP) is a ubiquitous intracellular second messenger that mediates the action of various hormones and neurotransmitters and influences a plethora of cellular functions. In particular, multiple neuronal processes such as synaptic plasticity underlying learning and memory are dependent on cAMP signalling cascades. It is now well recognized that the specificity and fidelity of cAMP downstream effects are achieved through a tight temporal as well as spatial control of the cAMP signals. Approaches relying on real-time imaging and Fluorescence Resonance Energy Transfer (FRET)-based biosensors for direct visualization of cAMP changes as they happen in intact living cells have recently started to uncover the fine details of cAMP spatio-temporal signalling patterns. Here we report the generation of transgenic fruit-flies expressing a FRET-based, GFP-PKA sensor and their use in real-time optical recordings of cAMP signalling both ex vivo and in vivo in adult and developing organisms. These transgenic animals represent a novel tool for understanding the physiology of the cAMP signalling pathway in the context of a functioning body.

摘要

3'-5'-环磷酸腺苷(cAMP)是一种普遍存在的细胞内第二信使,它介导各种激素和神经递质的作用,并影响众多细胞功能。特别是,多个神经元过程,如学习和记忆所依赖的突触可塑性,都取决于cAMP信号级联反应。现在人们已经充分认识到,cAMP下游效应的特异性和保真度是通过对cAMP信号进行严格的时间和空间控制来实现的。依靠实时成像和基于荧光共振能量转移(FRET)的生物传感器来直接观察完整活细胞中cAMP变化的方法,最近开始揭示cAMP时空信号模式的细节。在此,我们报告了表达基于FRET的GFP-PKA传感器的转基因果蝇的产生及其在成年和发育中的生物体的离体和体内cAMP信号实时光学记录中的应用。这些转基因动物是在功能正常的生物体中理解cAMP信号通路生理学的一种新工具。

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