Tata Institute of Fundamental Research, Serilingampally, Hyderabad, India.
Saha Institute of Nuclear Physics, Kolkata, India.
Biophys J. 2018 Aug 7;115(3):455-466. doi: 10.1016/j.bpj.2018.05.038.
We have developed a fluorescence correlation spectroscopy (FCS) setup for performing single-molecule measurements on samples inside regular cuvettes. The cuvette FCS uses a horizontally mounted extra-long working distance, 0.7 NA, air objective with a working distance of >1.8 mm instead of a high NA water or oil immersion objective. The performance of the cuvette FCS is found to be highly sensitive to the quality and alignment of the cuvette. The radial resolution and effective observation volume obtained using the optimized setup are ∼340 nm and 1.8 fL, respectively. The highest molecular brightness and the signal/noise ratio in the autocorrelation data achieved using an aqueous solution of rhodamine B are greater than 44 kHz and 110, respectively. Here, we demonstrate two major advantages of cuvette FCS. For example, the cuvette FCS can be used for measurements over a wide range of temperatures that is beyond the range permitted in the microscope-based FCS. Furthermore, cuvette FCS can be coupled to automatic titrators to study urea-dependent unfolding of proteins with unprecedented accuracy. The ease of use and compatibility with various accessories will enable applications of cuvette FCS in the experiments that are regularly performed in spectrofluorometers but are generally avoided in microscope-based FCS.
我们开发了一种荧光相关光谱(FCS)装置,用于在常规比色皿内的样品上进行单分子测量。比色皿 FCS 使用水平安装的超长工作距离、0.7 NA、空气物镜,工作距离大于 1.8mm,而不是高 NA 水浸或油浸物镜。比色皿 FCS 的性能高度依赖于比色皿的质量和对准情况。使用优化的设置获得的径向分辨率和有效观察体积分别约为 340nm 和 1.8fL。使用罗丹明 B 的水溶液在自相关数据中实现的最高分子亮度和信噪比大于 44kHz 和 110,分别。在这里,我们展示了比色皿 FCS 的两个主要优势。例如,比色皿 FCS 可用于测量宽温度范围,超出基于显微镜的 FCS 允许的范围。此外,比色皿 FCS 可以与自动加液器耦合,以以前所未有的精度研究尿素依赖性蛋白质的展开。易用性和与各种附件的兼容性将使比色皿 FCS 在通常在荧光分光光度计中进行但在基于显微镜的 FCS 中通常避免的实验中得到应用。