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Analysis of Functional Signaling Domains from Fluorescence Imaging and the Two-Dimensional Continuous Wavelet Transform

机译:荧光成像和二维连续小波变换对功能信号域的分析

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摘要

A technique that utilizes the one-dimensional (1D) continuous wavelet transform (CWT) of linearized fluorescence resonance energy transfer (FRET) microscopic images has been extended to identify signaling macro- and microdomains in cell plasma membranes by incorporating the two-dimensional (2D) CWT of time-lapse fluorescence and/or FRET images. Signaling domains were identified from differences in wavelet coefficient matrices, and there was good agreement between the 1D and 2D methods on examining a), static fluorescent images of COS1 cells expressing calmodulin kinase II fused with enhanced yellow fluorescent protein, and b), time lapse FRET images of reporters of protein kinase C (PKC) (PKC activity reporter) and adenylyl cyclase dynamics (cAMP) activity within COS1 plasma membrane confines after stimulation by phorbol-12,13-dibutyrate or forskolin, respectively. The proposed 2D wavelet-based image analysis effectively detected phosphorylation/dephosphorylation signaling microdomains (PKC) as well as those reflective of cAMP without the limitation of requiring linearized signals imposed by the 1D approach. Illustrating successful application to the analysis of intracellular compartments, the 2D CWT was further used to identify signaling domains of cAMP response element-binding (CREB)-induced transcriptional activation in the nuclei of COS1 cells, which could not be achieved with the 1D approach. This technique may be eventually used to characterize complex cellular signaling and protein-protein interactions within localized cytoplasmic domains.
机译:利用线性化荧光共振能量转移(FRET)显微图像的一维(1D)连续小波变换(CWT)的技术已得到扩展,可以通过合并二维(2D)来识别细胞质膜中的信号宏和微域)延时荧光和/或FRET图像的CWT。从小波系数矩阵的差异中识别出信号域,并且在检查a),表达钙调蛋白激酶II的COS1细胞与增强的黄色荧光蛋白融合的COS1细胞的静态荧光图像和b)的一维和二维方法之间存在良好的一致性蛋白激酶C(PKC)的报告子(PKC活性报告子)和COS1质膜内腺苷酸环化酶动力学(cAMP)活性的报告子FRET图像分别受佛波12,13-二丁酸酯或毛喉素刺激后限制。所提出的基于2D小波的图像分析可有效检测磷酸化/去磷酸化信号微区(PKC)以及反射cAMP的微区,而无需限制由1D方法施加的线性化信号。为了说明在细胞内区室分析中的成功应用,二维CWT还被用来识别cAMP反应元件结合(CREB)诱导的COS1细胞核转录激活的信号传导域,而一维方法则无法实现。该技术最终可用于表征局部细胞质结构域内复杂的细胞信号传导和蛋白质-蛋白质相互作用。

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