Petrásek Zdenek, Schwille Petra
Biophysics Group, Biotechnologisches Zentrum, Technische Universität Dresden, Dresden, Germany.
Biophys J. 2008 Feb 15;94(4):1437-48. doi: 10.1529/biophysj.107.108811. Epub 2007 Oct 12.
We have implemented scanning fluorescence correlation spectroscopy (sFCS) for precise determination of diffusion coefficients of fluorescent molecules in solution. The measurement volume where the molecules are excited, and from which the fluorescence is detected, was scanned in a circle with radius comparable to its size at frequencies 0.5-2 kHz. The scan radius R, determined with high accuracy by careful calibration, provides the spatial measure required for the determination of the diffusion coefficient D, without the need to know the exact size of the measurement volume. The difficulties in the determination of the measurement volume size have limited the application of standard FCS with fixed measurement volume to relative measurements, where the diffusion coefficient is determined by comparison with a standard. We demonstrate, on examples of several common fluorescent dyes, that sFCS can be used to measure D with high precision without a need for a standard. The correct value of D can be determined in the presence of weak photobleaching, and when the measurement volume size is modified, indicating the robustness of the method. The applicability of the presented implementation of sFCS to biological systems in demonstrated on the measurement of the diffusion coefficient of eGFP in the cytoplasm of HeLa cells. With the help of simulations, we find the optimal value of the scan radius R for the experiment.
我们已采用扫描荧光相关光谱法(sFCS)精确测定溶液中荧光分子的扩散系数。对分子进行激发并检测荧光的测量体积在半径与其大小相当的圆周上以0.5 - 2 kHz的频率进行扫描。通过仔细校准高精度确定的扫描半径R,提供了测定扩散系数D所需的空间量度,而无需知道测量体积的确切大小。确定测量体积大小的困难限制了具有固定测量体积的标准FCS在相对测量中的应用,在相对测量中,扩散系数是通过与标准进行比较来确定的。我们以几种常见荧光染料为例证明,sFCS可用于高精度测量D而无需标准。在存在弱光漂白以及测量体积大小改变的情况下,都能确定D的正确值,这表明了该方法的稳健性。通过测量HeLa细胞细胞质中eGFP的扩散系数,证明了所提出的sFCS实现方式对生物系统的适用性。借助模拟,我们找到了该实验的最佳扫描半径R值。