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Design, construction, and analysis of a novel class of self-folding RNA

机译:一类新型的自折叠RNA的设计,构建和分析

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摘要

RNA can play multiple biological roles through use of its three-dimensional (3-D) structures. Recent advances in RNA structural biology have revealed that complex RNA 3D structures are assemblages of double-stranded helices with a variety of tertiary structural motifs. By employing RNA tertiary structural motifs together with the helices, we designed a novel class of self-folding RNA. In RNA composed of three helices (P1, P2, and P3), P1 interacts with P3 via a tetraloop-receptor interaction and P2 forms consecutive base-triples. Two designed RNAs of this class were prepared and their folding properties indicate that they form defined tertiary structures as designed. These RNAs may be used as modular units for constructing artificial ribozymes or nanometer-scale materials. [References: 49]
机译:RNA可以通过使用其三维(3-D)结构发挥多种生物学作用。 RNA结构生物学的最新进展表明,复杂的RNA 3D结构是具有各种三级结构基序的双链螺旋的集合。通过将RNA三级结构基序与螺旋一起使用,我们设计了一类新的自折叠RNA。在由三个螺旋(P1,P2和P3)组成的RNA中,P1通过四环受体相互作用与P3相互作用,而P2形成连续的三基团。制备了两种设计的此类RNA,其折叠特性表明它们形成了所设计的确定的三级结构。这些RNA可以用作构建人工核酶或纳米级材料的模块单元。 [参考:49]

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