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首页> 外文期刊>Journal of Microscopy >Raster image correlation spectroscopy (RICS) for measuring fast protein dynamics and concentrations with a commercial laser scanning confocal microscope.
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Raster image correlation spectroscopy (RICS) for measuring fast protein dynamics and concentrations with a commercial laser scanning confocal microscope.

机译:光栅图像相关光谱法(RICS),可通过商用激光扫描共聚焦显微镜测量快速的蛋白质动力学和浓度。

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摘要

Raster image correlation spectroscopy (RICS) is a new and novel technique for measuring molecular dynamics and concentrations from fluorescence confocal images. The RICS technique extracts information about molecular dynamics and concentrations from images of living cells taken on commercial confocal systems. Here we develop guidelines for performing the RICS analysis on an analogue commercial laser scanning confocal microscope. Guidelines for typical instrument settings, image acquisition settings and analogue detector characterization are presented. Using appropriate instrument/acquisition parameters, diffusion coefficients and concentrations can be determined, even for highly dynamic dye molecules in solution. Standard curves presented herein demonstrate the ability to detect protein concentrations as low as approximately 2 nM. Additionally, cellular measurements give accurate values for the diffusion of paxillin-enhanced-green fluorescent protein (EGFP), an adhesion adaptor molecule, in the cytosol of the cell and also show slower paxillin dynamics near adhesions where paxillin interacts with immobile adhesion components. Methods are presented to account for bright immobile structures within the cell that dominate spatial correlation functions; allowing the extraction of fast protein dynamics within and near these structures. A running average algorithm is also presented to address slow cellular movement or movement of cellular features such as adhesions. Finally, methods to determine protein concentration in the presence of immobile structures within the cell are presented. A table is presented giving guidelines for instrument and imaging setting when performing RICS on the Olympus FV300 confocal and these guidelines are a starting point for performing the analysis on other commercial confocal systems.
机译:光栅图像相关光谱法(RICS)是一种用于从荧光共聚焦图像测量分子动力学和浓度的新技术。 RICS技术从在商业共聚焦系统上拍摄的活细胞图像中提取有关分子动力学和浓度的信息。在这里,我们开发了在模拟商业激光扫描共聚焦显微镜上执行RICS分析的指南。介绍了典型仪器设置,图像采集设置和模拟检测器表征的指南。使用适当的仪器/采集参数,即使对于溶液中的高动态染料分子,也可以确定扩散系数和浓度。本文介绍的标准曲线证明了检测低至约2 nM蛋白质浓度的能力。此外,细胞测量结果给出了粘附力适配器分子Paxillin增强的绿色荧光蛋白(EGFP)在细胞胞液中扩散的准确值,并且在Paxillin与固定的粘附成分相互作用的粘附附近显示Paxillin动力学较慢。提出了解决占主导地位的空间相关功能的细胞内固定结构的方法。可以提取这些结构内部和附近的快速蛋白质动力学。还提出了移动平均算法来解决缓慢的细胞运动或细胞特征(如粘连)的运动。最后,介绍了确定细胞内固定结构存在时蛋白质浓度的方法。列出了表格,为在Olympus FV300共焦上执行RICS时仪器和成像设置提供了指南,这些指南是在其他商用共焦系统上进行分析的起点。

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