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Hydration Structure of a Single DNA Molecule Revealed by Frequency-Modulation Atomic Force Microscopy

机译:通过频率调制原子力显微镜显示的单个DNA分子的水合结构

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Hydration interaction shapes biomolecules and is a dominant intermolecular force. Mapping the hydration patterns of biomolecules is therefore essential for understanding molecular processes in biology. Numerous studies have been devoted to this challenge, but current methods cannot map the hydration of single biomolecules, let alone do so under physiological conditions. Here, we show that frequency-modulation atomic force microscopy (FM-AFM) can fill this gap and generate 3D hydration maps of single DNA molecules under near-physiological conditions. Additionally, we present real-space images of DNA in which the double helix is resolved with unprecedented resolution, clearly revealing individual phosphate groups along the DNA backbone. FM-AFM therefore emerges as a powerful enabling tool in the study of individual biomolecules and their hydration under physiological conditions.
机译:水合相互作用形状生物分子并且是主要的分子间力。 因此,映射生物分子的水合模式对于理解生物学中的分子过程是必不可少的。 众多研究已经致力于这一挑战,但目前的方法无法映射单一生物分子的水合,更不用说在生理条件下这样做。 这里,我们表明频率调制原子力显微镜(FM-AFM)可以在接近生理条件下填充该间隙并在近生理条件下产生单个DNA分子的3D水合图。 此外,我们呈现DNA的实际空间图像,其中双螺旋与前所未有的分辨率分解,清楚地揭示沿DNA骨架的单个磷酸盐组。 因此,FM-AFM作为在生理条件下研究单个生物分子及其水合的强大的能力工具。

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