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Polarization-dependent fluorescence correlation spectroscopy for studying structural properties of proteins in living cell

机译:偏振依赖性荧光相关光谱技术,用于研究活细胞中蛋白质的结构特性

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摘要

Rotational diffusion measurement is predicted as an important method in cell biology because the rotational properties directly reflect molecular interactions and environment in the cell. To prove this concept, polarization-dependent fluorescence correlation spectroscopy (pol-FCS) measurements of purified fluorescent proteins were conducted in viscous solution. With the comparison between the translational and rotational diffusion coefficients obtained from pol-FCS measurements, the hydrodynamic radius of an enhanced green fluorescent protein (EGFP) was estimated as a control measurement. The orientation of oligomer EGFP in living cells was also estimated by pol-FCS and compared with Monte Carlo simulations. The results of this pol-FCS experiment indicate that this method allows an estimation of the molecular orientation using the characteristics of rotational diffusion. Further, it can be applied to analyze the degree of molecular orientation and multimerization or detection of tiny aggregation of aggregate-prone proteins.
机译:旋转扩散测量被预测为细胞生物学中的一种重要方法,因为旋转特性直接反映了细胞中的分子相互作用和环境。为了证明这一概念,在粘性溶液中对纯化的荧光蛋白进行了偏振依赖性荧光相关光谱(pol-FCS)测量。通过从pol-FCS测量获得的平移和旋转扩散系数之间的比较,可以估算增强绿色荧光蛋白(EGFP)的流体力学半径作为对照测量。还通过pol-FCS估计了活细胞中低聚物EGFP的方向,并与Monte Carlo模拟进行了比较。此pol-FCS实验的结果表明,该方法可以利用旋转扩散的特性估算分子的取向。此外,它可用于分析分子取向度和多聚化程度或易于聚集的蛋白质微小聚集的检测。

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