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Helical DNA Origami Tubular Structures with Various Sizes and Arrangements

机译:各种大小和排列的螺旋DNA折纸管状结构

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摘要

We developed a novel method to design various helical tubular structures using the DNA origami method. The size-controlled tubular structures which have 192, 256, and 320 base pairs for one turn of the tube were designed and prepared. We observed the formation of the expected short tubes and unexpected long ones. Detailed analyses of the surface patterns of the tubes showed that the short tubes had mainly a left-handed helical structure. The long tubes mainly formed a right-handed helical structure and extended to the directions of the double helical axes as structural isomers of the short tubes. The folding pathways of the tubes were estimated by analyzing the proportions of short and long tubes obtained at different annealing conditions. Depending on the number of base pairs involved in one turn of the tube, the population of left-/right-handed and short/long tubes changed. The bending stress caused by the stiffness of the bundled double helices and the non-natural helical pitch determine the structural variety of the tubes.
机译:我们开发了一种使用DNA折纸方法设计各种螺旋管状结构的新颖方法。设计并制备了尺寸受控的管状结构,该结构具有用于一圈管的192、256和320个碱基对。我们观察到了预期的短管和意外的长管的形成。管的表面图案的详细分析表明,短管主要具有左旋螺旋结构。长管主要形成右旋螺旋结构,并作为短管的结构异构体延伸至双螺旋轴方向。通过分析在不同退火条件下获得的短管和长管的比例来估计管的折叠路径。根据一圈试管中涉及的碱基对的数目,左/右手管和短/长管的总数发生了变化。由捆扎的双螺旋的刚度和非自然螺旋节距引起的弯曲应力决定了管的结构多样性。

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