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Stretch-and-positioning of single stranded DNA as a template for molecular construction

机译:单链DNA的拉伸和定位作为分子结构的模板

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The high-specificity self-assembling nature of DNA makes the molecule a candidate for the template for the molecular construction. In order to construct a functional device, the template must be positioned onto a predetermined site on a substrate to allow external connections, and the components must be properly aligned onto the template. A key factor is the high yield of binding. Such high yield requires that the bases of the template DNA be exposed so that its counterpart can interact freely, and the template be stretched to avoid folding or coiling that hampers the interaction. For this purpose, we have developed a method, by which a single-stranded DNA is stretched and immobilized bridging over an electrode pair, with the molecular ends anchored while the middle part is left free to interact with foreign molecules.
机译:DNA的高特异性自组装性质使分子成为分子结构模板的候选者。为了构造功能装置,模板必须定位在基板上的预定站点上以允许外部连接,并且组件必须正确地对准模板。关键因素是结合的高产量。这种高产率要求暴露模板DNA的碱,使其对应物可以自由地相互作用,并且将模板拉伸以避免折叠或卷绕妨碍相互作用的折叠或卷绕。为此目的,我们开发了一种方法,通过该方法,通过将单链DNA拉伸并固定在电极对上的桥接,其中分子末端锚定,而中间部分可自由与外部分子相互作用。

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