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Quantification of local hydration at the surface of biomolecules using dual-fluorescence labels

机译:使用双荧光标记定量生物分子表面的局部水合作用

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By using four labels of the 3-hydroxyflavone family displaying selective sensitivity to hydrogen bond (HB) donors and poor response to other polar molecules, we developed an approach for measuring local water concentration [H _2O] _L (or partial volume of water: W A = [H _2O] _L/55.6) in the label surrounding both in solvent mixtures and in biomolecules by the intensity ratio of two emissive forms of the label, N*/T*. Using a series of binary water/solvent mixtures with limited preferential solvation effects, a linear dependence of log(N*/T*) on the local concentration of HB donor was obtained and then used as a calibration curve for estimating the W _A values in the surroundings of the probes conjugated to biomolecules. By this approach, we estimated the hydration of the labels in different peptides and their complexes with DNAs. We found that W _A values for the label at the peptide N-terminus are lower (0.63-0.91) than for free labels and depend strongly on the nature of the N-terminal amino acid. When complexed with different DNAs, the estimated hydration of the labels conjugated to the labeled peptides was much lower (W _A = 0-0.47) and depended on the DNA nature and linker-label structure. Thus, the elaborated method allows a site-specific evaluation of hydration at the surface of a biomolecule through the determination of the partial volume of water. We believe the developed procedure can be successfully applied for monitoring hydration at the surface of any biomolecule or nanostructure.
机译:通过使用对氢键(HB)供体具有选择性敏感性且对其他极性分子反应较差的3-羟基黄酮家族的四个标记,我们开发了一种测量局部水浓度[H _2O] _L(或水的部分体积:WA的方法) = [H _2O] _L / 55.6),通过溶剂的两种发射形式的强度比N * / T *包围在溶剂混合物和生物分子中的标记。使用一系列具有有限优先溶剂化作用的二元水/溶剂混合物,获得了log(N * / T *)对HB供体局部浓度的线性依赖性,然后将其用作校正曲线,以估算W_A值。与生物分子结合的探针周围。通过这种方法,我们估计了不同肽及其与DNA的复合物中标记的水合作用。我们发现肽N端的标记的W _A值比游离标记的W _A值低(0.63-0.91),并且强烈取决于N末端氨基酸的性质。当与不同的DNA复合时,与标记的肽缀合的标记的估计水合度要低得多(W_A = 0-0.47),并且取决于DNA的性质和接头标记的结构。因此,通过确定水的部分体积,精心设计的方法可以对生物分子表面的水合作用进行定点评估。我们相信,开发的程序可以成功地应用于监测任何生物分子或纳米结构表面的水合作用。

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