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Bottom-up Assembly of RNA Arrays and Superstructures as Potential Parts in Nanotechnology

机译:RNA阵列和超结构的自下而上的组装作为纳米技术中的潜在组成部分

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摘要

DNA and protein have been extensively scrutinized for feasibility as parts in nanotechnology, but another natural building block, RNA, has been largely ignored. RNA can be manipulated to form versatile shapes, thus providing an element of adaptability to DNA nanotechnology, which is predominantly based upon a double-helical structure. The DNA-packaging motor of bacterial virus phi29 contains six DNA-packaging RNAs (pRNA), which together form a hexameric ring via loop/loop interaction. Here we report that this pRNA can be redesigned to form a variety of structures and shapes, including twins, tetramers, rods, triangles, and 3D arrays several microns in size via interaction of programmed helical regions and loops. Three dimensional RNA array formation required a defined nucleotide number for twisting of the interactive helix and a palindromic sequence. Such arrays are unusually stable and resistant to a wide range of temperatures, salt concentrations, and pH.
机译:DNA和蛋白质作为纳米技术的一部分已经被广泛地审查了可行性,但是另一个自然的组成部分RNA被广泛忽略了。可以操纵RNA形成多种形状,从而提供一种主要基于双螺旋结构的DNA纳米技术适应性元素。细菌病毒phi29的DNA包装马达包含六个DNA包装RNA(pRNA),它们通过环/环相互作用共同形成六聚环。在这里我们报告说,可以通过编程的螺旋区域和环的相互作用,重新设计此pRNA以形成多种结构和形状,包括双胞胎,四聚体,棒,三角形和大小为几微米的3D阵列。三维RNA阵列的形成需要一个确定的核苷酸数目,以使交互式螺旋和回文序列发生扭曲。这样的阵列异常稳定,并能抵抗各种温度,盐浓度和pH值。

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