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Multianalytical Study of the Binding between a Small Chiral Molecule and a DNA Aptamer: Evidence for Asymmetric Steric Effect upon 3 '-versus 5 '-End Sequence Modification

机译:小手性分子与DNA适体之间结合的多分析研究:3'-对5'-末端序列修饰的不对称立体效应的证据

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Nucleic acid aptamers are involved in a broad field of applications ranging from therapeutics to analytics. Deciphering the binding mechanisms between aptamers and small ligands is therefore crucial to improve and optimize existing applications and to develop new ones. Particularly interesting is the enantiospecific binding mechanism involving small molecules with nonprestructured aptamers. One archetypal example is the chiral binding between L-tyrosinamide and its 49-mer aptamer for which neither structural nor mechanistic information is available. In the present work, we have taken advantage of a multiple analytical characterization strategy (i.e., using electroanalytical techniques such as kinetic rotating droplet electrochemistry, fluorescence polarization, isothermal titration calorimetry, and quartz crystal microbalance) for interpreting the nature of binding process. Screening of the binding thermodynamics and kinetics with alpha-wide range of aptamer sequences revealed the lack of symmetry between the two ends of the 23-mer minimal binding sequence, showing an unprecedented influence of the 5' aptamer modification on the bimolecular binding rate constant icon and no significant effect on the dissociation rate constant koff. The results we have obtained lead us to conclude that the enantiospecific binding reaction occurs through an induced -fit mechanism, wherein the ligand promotes a primary nucleation binding step near the 5'-end of the aptamer followed by a directional folding of the aptamer around its target from 5'-end to 3'-end. Functionalization of the 5/-end position by a chemical label, a polydA tail, a protein, or a surface influences the kinetic/thermodynamic constants up to 2 orders of magnitude in the extreme case of a surface immobilized aptamer, while significantly weaker effect is observed for a 3'-end modification. The reason is that steric hindrance must be overcome to nucleate the binding complex in the presence of a modification near the nucleation site.
机译:核酸适体涉及从治疗到分析的广泛应用领域。因此,破解适体和小配体之间的结合机制对于改善和优化现有应用以及开发新应用至关重要。特别有趣的是对映体特异性结合机制,该机制涉及具有非预构建适体的小分子。一个典型的例子是L-酪氨酰胺和它的49聚体适体之间的手性结合,但没有结构或机理方面的信息。在当前的工作中,我们利用了多种分析表征策略(即使用电分析技术,例如动态旋转液滴电化学,荧光偏振,等温滴定量热法和石英晶体微量天平)来解释结合过程的性质。筛选具有α宽范围的适体序列的结合热力学和动力学,发现23-mer最小结合序列的两端之间缺乏对称性,显示了5'适体修饰对双分子结合率常数图标的空前影响且对解离速率常数koff无明显影响。我们获得的结果使我们得出结论,对映体特异性结合反应是通过诱导拟合机制发生的,其中配体促进适体5'端附近的初级成核结合步骤,然后使适体围绕其定向折叠从5'端定位到3'端。在表面固定的适体的极端情况下,化学标记,polydA尾部,蛋白质或表面对5 /末端位置的功能化会影响动力学/热力学常数,最高达2个数量级,而作用明显减弱。观察到3'端修饰。原因是在成核位点附近存在修饰时,必须克服位阻以使结合复合物成核。

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