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使用自组装核酸结构的前景。

Prospects for using self-assembled nucleic acid structures.

作者信息

Rudchenko M N, Zamyatnin A A

机构信息

Research Division, Hospital for Special Surgery, New York, NY 10021, USA.

出版信息

Biochemistry (Mosc). 2015 Apr;80(4):391-9. doi: 10.1134/S000629791504001X.

Abstract

According to the central dogma in molecular biology, nucleic acids are assigned with key functions on storing and executing genetic information in any living cell. However, features of nucleic acids are not limited only with properties providing template-dependent biosynthetic processes. Studies of DNA and RNA unveiled unique features of these polymers able to make various self-assembled three-dimensional structures that, among other things, use the complementarity principle. Here, we review various self-assembled nucleic acid structures as well as application of DNA and RNA to develop nanomaterials, molecular automata, and nanodevices. It can be expected that in the near future results of these developments will allow designing novel next-generation diagnostic systems and medicinal drugs.

摘要

根据分子生物学的中心法则,核酸在任何活细胞中都被赋予了存储和执行遗传信息的关键功能。然而,核酸的特性并不局限于提供依赖模板的生物合成过程的性质。对DNA和RNA的研究揭示了这些聚合物的独特特性,它们能够形成各种利用互补原理等的自组装三维结构。在此,我们综述了各种自组装核酸结构以及DNA和RNA在开发纳米材料、分子自动机和纳米器件方面的应用。可以预期,在不久的将来,这些进展的成果将有助于设计新型的下一代诊断系统和药物。

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