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Red-edge anisotropy microscopy enables dynamic imaging of homo-FRET between green fluorescent proteins in cells

机译:红边各向异性显微镜能够对细胞中绿色荧光蛋白之间的均FRET进行动态成像

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摘要

Steady-state fluorescence anisotropy measurements can be used to detect fluorescence resonance energy transfer (FRET) between identical fluorophores (homo-FRET). However, the contribution of homo-FRET to the steady-state anisotropy must be discerned from those due to the orientational distribution and rotational diffusion, which so far has required photobleaching controls, largely precluding dynamic measurements in live cells. We describe a variation of steady-state anisotropy microscopy in which the contribution of homo-FRET is dynamically isolated from the total anisotropy by exploiting the loss of energy transfer that occurs at red-edge excitation. Excitation of enhanced green fluorescent protein (EGFP) at the red-edge of its absorption band shows the shift in the emission spectrum compared to main-band excitation that is characteristic for photo-selection of static low energy So-S, transitions that fail to exhibit FRET. An experimental setup for steady-state fluorescent anisotropy microscopy is described that can be used to acquire anisotropy images in live cells at main-band and red-edge excitation of EGFP. We demonstrate in live cells homo-FRET suppression of protein fusion constructs that consist of two and three EGFP molecules connected by short linkers. This methodology represents a novel approach for the dynamic measurement of homo-FRET in live cells that will be of utility in the biological sciences to detect oligomerization and concentration dependent interactions between identically labeled molecules
机译:稳态荧光各向异性测量可用于检测相同荧光团(homo-FRET)之间的荧光共振能量转移(FRET)。但是,必须将均FRET对稳态各向异性的贡献与定向分布和旋转扩散所引起的区别相区别,到目前为止,定向分布和旋转扩散都需要进行光致漂白控制,这在很大程度上排除了活细胞中的动态测量。我们描述了一种稳态各向异性显微镜的变化形式,其中通过利用在红边激发下发生的能量转移损失,将均一FRET的贡献从总各向异性中动态隔离出来。增强的绿色荧光蛋白(EGFP)在其吸收带的红色边缘处的激发显示出与主带激发相比发射光谱的变化,该变化是光选择静态低能So-S的特征,无法进行跃迁展示FRET。描述了用于稳态荧光各向异性显微镜的实验装置,该装置可用于在EGFP的主带和红边激发下获取活细胞中的各向异性图像。我们证明在活细胞中均FRET抑制蛋白融合构建体,该融合体由两个和三个通过短接头连接的EGFP分子组成。该方法学代表了一种动态测量活细胞中均FRET的新颖方法,该方法将在生物学中用于检测相同标记分子之间的寡聚和浓度依赖性相互作用

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