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Method for Accurate Determination of Dissociation Constants of Optical Ratiometric Systems: Chemical Probes, Genetically Encoded Sensors, and Interacting Molecules

机译:精确确定光学比率系统的解离常数的方法:化学探针,遗传编码传感器和相互作用分子

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摘要

Ratiometric chemical probes and genetically encoded sensors are of high interest for both analytical chemists and molecular biologists. Their high sensitivity toward the target ligand and ability to obtain quantitative results without a known sensor concentration have made them a very useful tool in both in vitro and in vivo assays. Although ratiometric sensors are widely used in many applications, their successful and accurate usage depends on how they are characterized in terms of sensing target molecules. The most important feature of probes and sensors besides their optical parameters is an affinity constant toward analyzed molecules. The literature shows that different analytical approaches are used to determine the stability constants, with the ratio approach being most popular. However, oversimplification and lack of attention to detail results in inaccurate determination of stability constants, which in turn affects the results obtained using these sensors. Here, we present a new method where ratio signal is calibrated for borderline values of intensities of both wavelengths, instead of borderline ratio values that generate errors in many studies. At the same time, the equation takes into account the cooperativity factor or fluorescence artifacts and therefore can be used to characterize systems with various stoichiometries and experimental conditions. Accurate determination of stability constants is demonstrated utilizing four known optical ratiometric probes and sensors, together with a discussion regarding other, currently used methods.
机译:比例化学探针和遗传编码传感器对分析化学家和分子生物学家都非常感兴趣。它们对靶配体的高敏感性以及在不知道传感器浓度的情况下获得定量结果的能力,使其成为体外和体内测定中非常有用的工具。尽管比例传感器在许多应用中得到广泛使用,但其成功和准确的使用取决于它们在检测目标分子方面的特征。探针和传感器的最重要特征除了其光学参数外,还包括对被分析分子的亲和常数。文献表明,使用不同的分析方法来确定稳定性常数,其中比率分析法最为流行。但是,过分简化和对细节的关注导致稳定性常数的确定不正确,进而影响了使用这些传感器获得的结果。在这里,我们提出了一种新的方法,其中针对两种波长强度的边界值校准比率信号,而不是在许多研究中都产生误差的边界比率值。同时,该方程考虑了协同系数或荧光伪影,因此可用于表征具有各种化学计量比和实验条件的系统。通过使用四个已知的光学比例探针和传感器以及有关其他当前使用方法的讨论,证明了稳定常数的准确确定。

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