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DNA Minicircles Connected via G-Quadruplex Interaction Modules

✍ Scribed by Diana P. N. Gonçalves; Thorsten L. Schmidt; Martin B. Koeppel; Alexander Heckel


Book ID
104593440
Publisher
John Wiley and Sons
Year
2010
Tongue
English
Weight
511 KB
Volume
6
Category
Article
ISSN
1613-6810

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✦ Synopsis


Abstract

G‐quadruplexes are becoming reliable alternative interaction modules for the construction of DNA nanoarchitectures due to their prompt inducibility by salts. In this Full Paper, we report the design and synthesis of two different DNA minicircles equipped with G‐rich appendixes that can self‐hybridize into a G‐quadruplex, which acts as a DNA recruiter and glue. Both minicircles, one containing a hairpin‐like G‐rich region and the other an open tuning‐fork‐like G‐rich region, have the potential to form DNA G‐nanoconstructs but only the tuning‐fork minicircle does so. Incubation of the tuning‐fork minicircle with Na^+^ and Ni^2+^ results in the formation of minicircle dimers, while K^+^ and Sr^2+^ unexpectedly induce the formation of multimers. Moreover, a catenated DNA nanoconstruct is obtained when the components of the hairpin minicircle are incubated with K^+^ or Na^+^ and assembled in a stepwise sequence. All nanoconstructs are visualized by atomic force microscopy.


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