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A single-stranded architecture for cotranscriptional folding of RNA nanostructures

机译:RNA纳米结构共转录折叠的单链架构

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摘要

Artificial DNA and RNA structures have been used as scaffolds for a variety of nanoscale devices. In comparison to DNA structures, RNA structures have been limited in size, but they also have advantages: RNA can fold during transcription and thus can be genetically encoded and expressed in cells. We introduce an architecture for designing artificial RNA structures that fold from a single strand, in which arrays of antiparallel RNA helices are precisely organized by RNA tertiary motifs and a new type of crossover pattern. We constructed RNA tiles that assemble into hexagonal lattices and demonstrated that lattices can be made by annealing and/or cotranscriptional folding. Tiles can be scaled up to 660 nucleotides in length, reaching a size comparable to that of large natural ribozymes.
机译:人工DNA和RNA结构已被用作各种纳米设备的支架。与DNA结构相比,RNA结构的大小受到限制,但它们也具有优势:RNA可以在转录过程中折叠,因此可以在细胞中进行遗传编码和表达。我们介绍了一种用于设计从单链折叠的人工RNA结构的体系结构,其中反平行RNA螺旋的阵列由RNA三次基序和新型交叉模式精确组织。我们构建了组装成六边形格子的RNA切片,并证明了可以通过退火和/或共转录折叠来制作格子。瓷砖的长度可扩展至660个核苷酸,大小可与大型天然核酶媲美。

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