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Scanning two-photon fluctuation correlation spectroscopy: particle counting measurements for detection of molecular aggregation.

机译:扫描两光子涨落相关光谱法:用于检测分子聚集的颗粒计数测量。

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摘要

Scanning fluctuation correlation spectroscopy (FCS) is an experimental technique capable of measuring particle number concentrations by monitoring spontaneous equilibrium fluctuations in the local concentration of a fluorescent species in a small (femtoliter) subvolume of a sample. The method can be used to detect molecular aggregation for dilute, submicromolar samples by directly "counting particles". We introduce the application of two-photon excitation to scanning FCS and discuss its important advantages for this technique. We demonstrate the capability of measuring particle number concentrations in solution, first with dilute samples of monodisperse 7-nm and 15-nm radius latex spheres, and then with B phycoerythrin. The detection of multiple species in a single sample is shown, using mixtures containing both sphere sizes. The method is then applied to study protein aggregation in solution. We monitor the concentration-dependent association/ dissociation equilibrium for glycogen phosphorylase A and malate dehydrogenase. The measured dissociation constants, 430 nM and 144 nM respectively, are in good agreement with previously published values. In addition, oligomer dissociation induced by pH titration from pH 8 to pH 5.0 is detectable for the enyme phosphofructokinase. The possibility of measuring dissociation kinetics by scanning two-photon FCS is also demonstrated using phosphofructokinase.
机译:扫描波动相关光谱法(FCS)是一种实验技术,能够通过监视小(飞升)子体积中荧光物质的局部浓度的自发平衡波动来测量颗粒数浓度。通过直接“计数颗粒”,该方法可用于检测稀亚微摩尔样品的分子聚集。我们介绍了双光子激发在扫描FCS中的应用,并讨论了该技术的重要优势。我们证明了首先使用稀释的7nm和15nm半径的单分散乳胶球样品,然后使用B藻红蛋白来测量溶液中颗粒数浓度的能力。显示了使用包含两个球体大小的混合物检测单个样品中的多种物质。然后将该方法应用于研究溶液中的蛋白质聚集。我们监测糖原磷酸化酶A和苹果酸脱氢酶的浓度依赖性缔合/解离平衡。测得的解离常数分别为430 nM和144 nM,与先前公布的值高度吻合。另外,对于酶磷酸果糖激酶而言,可检测到从pH 8到pH 5.0的pH滴定诱导的低聚物解离。使用磷酸果糖激酶还证明了通过扫描双光子FCS测量解离动力学的可能性。

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