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Spatio-temporal imaging of EGF-induced activation of protein kinase A by FRET in living cells

机译:活细胞中肌肉诱导蛋白激酶A的时空成像

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Intracellular molecular interaction is important for the study of cell physiology, yet current relevant methods require fixation or microinjection and lack temporal or spatial resolution. We introduced a new method—fluorescence resonance energy transfer (FRET) to detect molecular interaction in living cells. On the basis of FRET principle, A-kinase activity reporter (AKAR) protein was designed to consist of the fusions of cyan fluorescent protein (CFP), a phosphoamino acid binding domain, a consensus substrate for protein kinase-A (PKA), and yellow fluorescent protein (YFP). In this study, the designed pAKAR plasmid was used to transfect a human lung cancer cell line (ASTC-a-1) . When the AKAR-transfected cells were treated by forskolin (Fsk), we were able to observe the efficient transfer of energy from excited CFP to YFP within the AKAR molecule by fluorescence microcopy, whereas no FRET was detected in the transfected cells without the treatment of Fsk. When the cells were treated by Epidermal growth factor (EGF), the change of FRET was observed at different subcellular locations, reflecting PKA activation inside the cells upon EGF stimulation. The successful design of a fluorescence reporter of PKA activation and its application demonstrated the superiority of this technology in the research of intracellular protein-protein interaction.
机译:细胞内分子相互作用对于研究细胞生理学是重要的,但目前的相关方法需要固定或显微注射,并且缺乏时间或空间分辨率。我们介绍了一种新的方法 - 荧光共振能量转移(FRET)以检测活细胞中的分子相互作用。在FRET原理的基础上,A-激酶活性报告者(AKAR)蛋白被设计成Cyan荧光蛋白(CFP)的融合,磷酸氨基酸结合结构域,用于蛋白激酶-A(PKA)的共分基板,和黄色荧光蛋白(YFP)。在该研究中,设计的帕卡尔质粒用于转染人肺癌细胞系(ASTC-A-1)。当通过Forskolin(FSK)处理现有的转染细胞时,我们能够通过荧光显微核开地观察从荧光分子内从激发的CFP到YFP的能量转移,而在转染的细胞中没有任何褶皱而不会治疗FSK。当细胞通过表皮生长因子(EGF)处理时,在不同的亚细胞位置观察到FRET的变化,反映在EGF刺激时在细胞内部的PKA活化。 PKA激活的荧光报告的成功设计及其应用表明了该技术在细胞内蛋白质 - 蛋白质相互作用中的优越性。

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