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DNA conformational equilibrium enables continuous changing of curvatures

机译:DNA构象平衡使曲率的连续变化成为可能

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Assembly of complex structures from a small set of tiles is a common theme in biology. For example, many copies of identical proteins make up polyhedron-shaped, viral capsids and tubulin can make long microtubules. This inspired the development of tile-based DNA self-assembly for nanoconstruction, particularly for structures with high symmetries. In the final structure, each type of motif will adopt the same conformation, either rigid or with defined flexibility. For structures that have no symmetry, their assembly remains a challenge from a small set of tiles. To meet this challenge, algorithmic self-assembly has been explored driven by computational science, but it is not clear how to implement this approach to one-dimensional (1D) structures. Here, we have demonstrated that a constant shift of a conformational equilibrium could allow 1D structures to evolve. As shown by atomic force microscopy imaging, one type of DNA tile successfully assembled into DNA spirals and concentric circles, which became less and less curved from the structure's center outward. This work points to a new direction for tile-based DNA assembly.
机译:从一个小套装配的复杂结构瓷砖在生物学中是一种常见的主题。许多相同的蛋白质组成的副本polyhedron-shaped,病毒衣壳和微管蛋白作很长的微管。发展基于题目DNA自组装nanoconstruction,尤其是结构高对称性。每种类型的主题将采用相同的构象,刚性或定义的灵活性。对称,他们仍然是一个挑战少量的瓷砖。已经探索过算法的自组装由计算科学,但事实并非如此明确如何实现这种方法一维(1 d)结构。证明一个常数的转变构象平衡可以让1 d结构演变。显微镜成像,一种DNA瓷砖成功地组装成DNA螺旋同心圆,变得越来越少从结构的中心向外弯曲。基于题目的工作指出了一个新的方向的DNA组装。

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