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首页> 外文期刊>Archives of Biochemistry and Biophysics >Spectrally and spatially resolved fluorescence lifetime imaging in living cells: TRPV4-microfilament interactions
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Spectrally and spatially resolved fluorescence lifetime imaging in living cells: TRPV4-microfilament interactions

机译:光谱和空间分辨的活细胞荧光寿命成像:TRPV4-微丝相互作用

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摘要

Time- and space-correlated single photon counting method has been used to demonstrate the interactions of cation channel "transient receptor potential vanilloid 4" (TRPV4) and microfilaments. Living cells co-expressing TRPV4-CFP and actin-YFP, when excited for the donor molecules (CFP) exhibited an emission peak at 527 nm and decrease of the lifetime in the wavelength band 460-490 nm; corresponding to resonance energy transfer to YFP. CFP fluorescence decay was fitted best by a dual mode decay model. Considering the average lifetime of the donor, both in the presence and absence of acceptor yielded an apparent FRET efficiency of similar to 20%. This is rather high placing the minimum distance of chromophores in the two fluorescent proteins in the range of 4 nm. Thus, this study shows for the first time that TRPV4 and actin intimately associate within living cells. The significance of this finding for cell volume regulation is highlighted. (c) 2007 Elsevier Inc. All rights reserved.
机译:时间和空间相关的单光子计数方法已被用来证明阳离子通道“瞬态受体电位香草素4”(TRPV4)和微丝之间的相互作用。共表达TRPV4-CFP和肌动蛋白-YFP的活细胞在被供体分子(CFP)激发时表现出在527 nm处的发射峰,并在460-490 nm波段内寿命缩短。对应于共振能量转移到YFP。 CFP荧光衰减最适合双模衰减模型。考虑到供体的平均寿命,在存在和不存在受体的情况下,其表观FRET效率均接近20%。相当高的结果是,两个荧光蛋白中发色团的最小距离为4 nm。因此,这项研究首次表明TRPV4和肌动蛋白在活细胞内紧密结合。该发现对于细胞体积调节的重要性被强调。 (c)2007 Elsevier Inc.保留所有权利。

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