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首页> 外文期刊>Nanoscience and Nanotechnology Letters >Conformational Changes of Single-Stranded Hairpin DNA Covalently Immobilized on Solid Surfaces Investigated by Molecular Dynamics Simulations
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Conformational Changes of Single-Stranded Hairpin DNA Covalently Immobilized on Solid Surfaces Investigated by Molecular Dynamics Simulations

机译:单链发夹DNA的构象变化在分子动力学模拟中研究的固体表面上的共价固定

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摘要

Molecular beacons (MBs) are stem-loop hairpin structured nucleic acid probes that have shown greater sensitivity and specificity over linear DNA probes. For high-throughput DNA detection, MBs are often covalently immobilized on a variety of solid surfaces (e.g., glass slides and gold surfaces). The performance of immobilized MBs on solid surfaces has been found to be dependent on the stability and orientation of their stem-loop structures on surfaces. At present, however, there is still a lack of high-resolution experimental characterization approaches for determining the conformational behaviors of immobilized MBs on surfaces. Herein, we investigated the structure and dynamics of immobilized MB probe in NaCl and MgCl2 solutions respectively by performing all-atom molecular dynamics simulations. We found that the single immobilized MB probe maintained a stable stem-loop structure in the MgCl2 solution, while it undergone significant structural distortion in the NaCl solution. The results show that Mg2+ ions have a stronger stabilizing effect on immobilized hairpins compared with Na+ ions, which is attributed to their greater shielding ability for the negatively charged phosphate backbone. Moreover, the hydrogen-bonding dynamics in the hairpin's loop and stem parts were analyzed respectively to further understand the effect of the base-base interactions on conformational stability of MBs immobilized on solid surfaces. The findings in this work help to optimize the design of MBs biosensors, thus further improving their performance of nucleic acid detection.
机译:分子信标(MBS)是茎环发夹结构化核酸探针,其在线性DNA探针上显示出更大的敏感性和特异性。对于高通量DNA检测,MBS通常在各种固体表面(例如,玻璃载玻片和金表面)上共价固定。已经发现固定的MBS在固体表面上的性能取决于它们在表面上的茎环结构的稳定性和取向。然而,目前,仍然缺乏用于确定表面上固定的MBS的构象行为的高分辨率实验表征方法。在此,我们通过进行全原子分子动力学模拟来研究分别通过进行全原子分子动力学模拟的NaCl和MgCl2溶液中固定的MB探针的结构和动态。我们发现单个固定的MB探针在MgCl 2溶液中保持稳定的茎环结构,而在NaCl溶液中经过显着的结构变形。结果表明,与Na +离子相比,Mg2 +离子对固定的发夹具有更强的稳定性作用,其归因于它们对带负电荷的磷酸盐骨架的较大屏蔽能力。此外,分别分析了发夹环和茎零件中的氢键动力学,进一步了解基础基础相互作用对固定在固体表面上的MB的构象稳定性的影响。这项工作中的发现有助于优化MBS生物传感器的设计,从而进一步提高了它们对核酸检测的性能。

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