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首页> 外文期刊>Reviews in Molecular Biotechnology >Fluorescence resonance energy transfer analysis of protein-protein interactions in single living cells by multifocal multiphoton microscopy
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Fluorescence resonance energy transfer analysis of protein-protein interactions in single living cells by multifocal multiphoton microscopy

机译:多焦点多光子显微镜在单个活细胞中蛋白质相互作用的荧光共振能量转移分析

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摘要

Fluorescence resonance energy transfer (FRET) resolved by multifocal multiphoton microscopy (MMM) was successfully used to measure transport phenomena in living cells. We expressed different pairs of CFP-/YFP-fusion proteins involved in retrograde Golgi-to-ER transport to analyze sorting of the occupied KDEL-receptor into retrograde transport vesicles triggered by application of the external cholera toxin mutant CTXK63. FRET observed as a sensitized emission of the acceptor was confirmed by acceptor photobleaching and the dequenching of the donor was measured. FRET-MMM data obtained from single cells were compared with bulk cell experiments employing spectrofluorimetry. The importance of controlling the degree of overexpression of CFP-/YFP-fusion proteins for FRET analysis is stressed in this article. Using MMM we showed for the first time that FRET can be measured across the Golgi membrane. Finally, FRET-MMM records performed continuously over 2 h allowed to analyze intracellular retrograde transport and sorting events and to discuss these mechanisms on a single cell level.
机译:通过多焦点多光子显微镜(MMM)解决的荧光共振能量转移(FRET)已成功用于测量活细胞中的转运现象。我们表达了参与逆行高尔基体到ER运输的CFP- / YFP融合蛋白对的不同对,以分析由外部霍乱毒素突变体CTXK63的应用引起的被占领的KDEL受体向逆行运输小泡的分类。通过受体光漂白证实了观察到的作为受体的敏化发射的FRET,并且测量了供体的去猝灭。从单细胞获得的FRET-MMM数据与采用荧光光谱法的大细胞实验进行了比较。本文强调控制FFP分析中CFP / YFP融合蛋白过表达程度的重要性。使用MMM,我们首次证明可以在高尔基体膜上测量FRET。最后,连续2小时进行的FRET-MMM记录可以分析细胞内逆行转运和分选事件,并在单个细胞水平上讨论这些机制。

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