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DNA纳米结构中RNA-RNA亲吻相互作用的单分子观测。

Single-molecule observations of RNA-RNA kissing interactions in a DNA nanostructure.

作者信息

Takeuchi Yosuke, Endo Masayuki, Suzuki Yuki, Hidaka Kumi, Durand Guillaume, Dausse Eric, Toulmé Jean-Jacques, Sugiyama Hiroshi

机构信息

Department of Chemistry, Graduate School of Science, Kyoto University, Kitashirakawa-oiwakecho, Sakyo-ku, Kyoto 606-8502, Japan.

Institute for Integrated Cell-Material Sciences (WPI-iCeMS), Kyoto University, Yoshida-ushinomiyacho, Sakyo-ku, Kyoto, 606-8501, Japan.

出版信息

Biomater Sci. 2016 Jan;4(1):130-5. doi: 10.1039/c5bm00274e.

Abstract

RNA molecules uniquely form a complex through specific hairpin loops, called a kissing complex. The kissing complex is widely investigated and used for the construction of RNA nanostructures. Molecular switches have also been created by combining a kissing loop and a ligand-binding aptamer to control the interactions of RNA molecules. In this study, we incorporated two kinds of RNA molecules into a DNA origami structure and used atomic force microscopy to observe their ligand-responsive interactions at the single-molecule level. We used a designed RNA aptamer called GTPswitch, which has a guanosine triphosphate (GTP) responsive domain and can bind to the target RNA hairpin named Aptakiss in the presence of GTP. We observed shape changes of the DNA/RNA strands in the DNA origami, which are induced by the GTPswitch, into two different shapes in the absence and presence of GTP, respectively. We also found that the switching function in the nanospace could be improved by using a cover strand over the kissing loop of the GTPswitch or by deleting one base from this kissing loop. These newly designed ligand-responsive aptamers can be used for the controlled assembly of the various DNA and RNA nanostructures.

摘要

RNA分子通过特定的发夹环独特地形成一种复合物,称为亲吻复合物。亲吻复合物得到了广泛研究,并用于构建RNA纳米结构。分子开关也是通过将亲吻环与配体结合适体结合来控制RNA分子的相互作用而创建的。在本研究中,我们将两种RNA分子整合到DNA折纸结构中,并使用原子力显微镜在单分子水平上观察它们的配体响应相互作用。我们使用了一种设计的RNA适体,称为GTP开关,它具有三磷酸鸟苷(GTP)响应结构域,并且在GTP存在的情况下可以与名为Aptakiss的靶RNA发夹结合。我们观察到DNA折纸中DNA/RNA链的形状变化,分别由GTP开关在不存在和存在GTP的情况下诱导为两种不同的形状。我们还发现,通过在GTP开关的亲吻环上使用覆盖链或从该亲吻环中删除一个碱基,可以改善纳米空间中的开关功能。这些新设计的配体响应适体可用于各种DNA和RNA纳米结构的可控组装。

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