| Literature DB >> 27214092 |
Qi Li1, Guangqi Wu1, Wei Wu2, Xingguo Liang3.
Abstract
Topologically controlled DNA catenanes are promising elements for the construction of molecular machines but present a significant effort in DNA nanotechnology. We report an efficient approach for preparing linear three-ring catenanes (L3C) composed of single-stranded DNA. The linking number was strictly controlled by using short complementary regions (6 nt) between each two DNA rings. High efficiency of forming three-ring catenanes (yield as high as 63 %) was obtained by using an 80 nt oligonucleotide as the scaffold to draw close the three pre-rings for hybridization between short complementary DNA. After assembly, three pre-rings were closed by DNA ligation using three 12 nt oligonucleotides as splints to form interlocked three-ring catenanes. L3C nanostructures were imaged in air by AFM: the catenane exhibited a smooth circular shape and was arranged in a line with well-defined structure, as expected.Entities:
Keywords: DNA structures; catenanes; nanotechnology; self-assembly; structural biology
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Year: 2016 PMID: 27214092 DOI: 10.1002/cbic.201600071
Source DB: PubMed Journal: Chembiochem ISSN: 1439-4227 Impact factor: 3.164