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首页> 外文期刊>ACS nano >Dynamic DNA Origami Device for Measuring Compressive Depletion Forces
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Dynamic DNA Origami Device for Measuring Compressive Depletion Forces

机译:用于测量压缩耗尽力的动态DNA折纸装置

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The ability to self-assemble nanodevices with programmed structural dynamics that can sense and respond to the local environment could enable transformative applications in fields including molecular robotics, nanomanufacturing, and nanomedicine. The responsive function of biomolecules is often driven by alterations in conformational distributions mediated by highly sensitive interactions with the local environment. Here, we mimic this approach by engineering inherent nanoscale structural dynamics (nanodynamics) into a DNA device that exhibits a distribution of conformations including two stable states separated by a transition state where the energy barrier height is on the scale of the thermal energy, k(B)T = 4.1 pN.nm, enabling spontaneous transitions between states. We further establish design principles to regulate the equilibrium and kinetic behavior by substituting a few DNA strand components. We use single-molecule Forster resonance energy transfer measurements to show these nanodynamic properties are sensitive to sub-piconewton depletion forces in the presence of molecular crowding agents, and the device can measure depletion forces with a resolution of similar to 100 fN. We anticipate that this approach of engineering nanodynamic DNA devices will enable molecular scale systems that sense and respond to their local environment with extremely high sensitivity.
机译:具有可感知和响应本地环境的编程结构动态的自组装纳米型的能力可以使包括分子机器人,纳米制造和纳米医生的领域的变革应用。生物分子的响应函数通常通过与局部环境高度敏感的相互作用介导的构象分布的改变来驱动。这里,通过工程固有的纳米级结构动态(纳米级动力学)模仿这种方法,该方法进入了一种DNA装置,所述DNA装置,所述DNA装置,所述DNA装置,所述DNA装置,所述DNA装置,所述DNA装置,所述DNA装置具有由所述能量屏障高度处于所述热能的规模的过渡状态分开的两个稳定状态,K( b)t = 4.1 pn.nm,在状态之间启用自发转换。我们进一步建立了设计原理来通过代替少数DNA链组分来调节平衡和动力学行为。我们使用单分子福尔斯特共振能量转移测量来显示这些纳米动力学性质对分子挤糖剂存在敏感的亚皮涅族耗尽力,并且该装置可以测量与100 fn类似的分辨率的耗尽力。我们预期这种工程纳米动力学DNA设备的方法将使分子尺度系统感觉到并响应其当地环境,具有极高的灵敏度。

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