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使用单细胞成像技术评估环磷酸腺苷(cAMP)动力学的调控。

Use of single-cell imaging techniques to assess the regulation of cAMP dynamics.

作者信息

Willoughby D, Cooper D M F

机构信息

Department of Pharmacology, University of Cambridge, Tennis Court Road, Cambridge CB2 1PD, UK.

出版信息

Biochem Soc Trans. 2006 Aug;34(Pt 4):468-71. doi: 10.1042/BST0340468.

Abstract

cAMP is a ubiquitous intracellular signalling molecule that can regulate a wide array of cellular processes. The diversity of action of this second messenger owes much to the localized generation, action and hydrolysis of cAMP within discrete subcellular regions. Further signalling specificity can be achieved by the ability of cells to modulate the frequency or incidence of such cAMP signals. Here, we discuss the use of two cAMP biosensors that measure real-time cAMP changes in the single cell, to address the mechanisms underlying the generation of dynamic cAMP signals. The first method monitors sub-plasmalemmal cAMP changes using mutant cyclic nucleotide-gated channels and identifies an AKAP (A-kinase-anchoring protein)-protein kinase A-PDE4 (phosphodiesterase-4) signalling complex that is central to the generation of dynamic cAMP transients in this region of the cell. The second study uses a fluorescence resonance energy transfer-based cAMP probe, based on Epac1 (exchange protein directly activated by cAMP 1), to examine interplay between Ca(2+) and cAMP signals. This study demonstrates real-time oscillations in cAMP driven by a Ca(2+)-stimulated AC (adenylate cyclase) (AC8) and subsequent PDE4 activity. These studies, using two very different single-cell cAMP probes, broaden our understanding of the specific spatiotemporal characteristics of agonist-evoked cAMP signals in a model cell system.

摘要

环磷酸腺苷(cAMP)是一种普遍存在的细胞内信号分子,可调节多种细胞过程。这种第二信使作用的多样性很大程度上归因于cAMP在离散亚细胞区域内的局部生成、作用和水解。细胞调节此类cAMP信号频率或发生率的能力可实现进一步的信号特异性。在这里,我们讨论了两种用于测量单细胞中实时cAMP变化的cAMP生物传感器的用途,以探讨动态cAMP信号产生的潜在机制。第一种方法使用突变型环核苷酸门控通道监测质膜下cAMP的变化,并鉴定出一种A激酶锚定蛋白(AKAP)-蛋白激酶A-磷酸二酯酶4(PDE4)信号复合物,该复合物是该细胞区域动态cAMP瞬变产生的核心。第二项研究使用基于cAMP直接激活的交换蛋白1(Epac1)的基于荧光共振能量转移的cAMP探针,来研究Ca(2+)和cAMP信号之间的相互作用。这项研究证明了由Ca(2+)刺激的腺苷酸环化酶(AC)(AC8)和随后的PDE4活性驱动的cAMP实时振荡。这些使用两种截然不同的单细胞cAMP探针的研究,拓宽了我们对模型细胞系统中激动剂诱发的cAMP信号特定时空特征的理解。

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