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Silver-Mediated Double Helix: Structural Parameters for a Robust DNA Building Block

机译:银介双螺旋:坚固的DNA构建基块的结构参数

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The DNA double helix is a versatile building block used in DNA nanotechnology. To potentiate the discovery of new DNA nanoscale assemblies, recently, silver cations have been introduced to pair DNA strands by base–Ag~(+)–base bonding rather than by Watson–Crick pairing. In this work, we study the classical dynamics of a parallel silver-mediated homobase double helix and compare it to the dynamics of the antiparallel double helix. Our classical simulations show that only the parallel double helix is highly stable through the 100 ns simulation time. A new type of H-bond previously proposed by our collaboration and recently observed in crystal-determined helices drives the physicochemical stabilization. Compared to the natural B-DNA form, the metal-mediated helix has a contracted axial base pair rise and smaller numbers of base pairs per turn. These results open the path for the inclusion of this robust metal-mediated building block into new nanoscale DNA assemblies.
机译:DNA双螺旋是DNA纳米技术中使用的通用构建基块。为了加强对新的DNA纳米级组件的发现,最近,银阳离子已通过碱基-Ag〜(+)-碱基键而不是沃森-克里克配对引入了DNA链配对。在这项工作中,我们研究了平行银介导的均基双螺旋的经典动力学,并将其与反平行双螺旋的动力学进行了比较。我们的经典模拟表明,在100 ns的模拟时间内,只有平行双螺旋是高度稳定的。我们的合作伙伴先前提出的一种新型H键,最近在晶体确定的螺旋中观察到,它推动了物化过程的稳定。与天然的B-DNA形式相比,金属介导的螺旋结构具有收缩的轴向碱基对上升,并且每转的碱基对数目较少。这些结果为将这种坚固的金属介导的构建基团纳入新​​的纳米级DNA组件开辟了道路。

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