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A new approach to interpretation of heterogeneity of fluorescence decay in complex biological systems

机译:复杂生物系统中荧光衰减异质性的一种新方法

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Decays of tyrosine fluorescence in protein-ligand complexes are described by a model of continuous distribution of fluorescence lifetimes. Resulted analytical power-like decay function provides good fits to highly complex fluorescence kinetics. Moreover, this is a manifestation of so-called Tsallis q-exponential function, which is suitable for description of the systems with long-range interactions, memory effect, as well as with fluctuations of the characteristic lifetime of fluorescence. The proposed decay functions were applied to analysis of fluorescence decays of tyrosine in a protein, i.e. the enzyme purine nucleoside phosphorylase from E. coli (the product of the deoD gene), free in aqueous solution and in a complex with formycin A (an inhibitor) and orthophosphate (a co-substrate). The power-like function provides new information about enzyme-ligand complex formation based on the physically justified heterogeneity parameter directly related to the lifetime distribution. A measure of the heterogeneity parameter in the enzyme systems is provided by a variance of fluorescence lifetime distribution. The possible number of deactivation channels and excited state mean lifetime can be easily derived without a priori knowledge of the complexity of studied system. Moreover, proposed model is simpler then traditional multi-exponential one, and better describes heterogeneous nature of studied systems.
机译:通过连续分布的荧光寿命的模型描述了蛋白质 - 配体复合物中的酪氨酸荧光的衰变。产生的分析功率样衰减功能为高度复杂的荧光动力学提供了良好的拟合。此外,这是所谓的TSAllis Q-指数函数的表现,其适用于具有远程相互作用,记忆效应,记忆效应的系统的描述以及荧光的特征寿命的波动。拟议的衰变功能用于分析蛋白质中酪氨酸的荧光衰减,即来自大肠杆菌(Deod基因产物)的酶嘌呤核苷磷酸化酶,在水溶液中,与甲酰菌素A(抑制剂)(抑制剂) )和正磷酸(共磷酸盐)。功率样功能基于与寿命分布直接相关的物理公正的异质性参数提供有关酶 - 配体复合物的新信息。通过荧光寿命分布的方差提供酶系统中的异质性参数的量度。可以容易地导出可能存在的停用信道和激发态平均寿命,而无需先验到所研究的系统复杂性的知识。此外,所提出的模型然后是传统的多指数型更简单,更好地描述了所研究的系统的异质性质。

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