TY - JOUR
T1 - Controlling the stoichiometry and strand polarity of a tetramolecular G-quadruplex structure by using a DNA origami frame
AU - Rajendran, Arivazhagan
AU - Endo, Masayuki
AU - Hidaka, Kumi
AU - Lan Thao Tran, Phong
AU - Mergny, Jean Louis
AU - Sugiyama, Hiroshi
N1 - Funding Information:
CREST, Japan Science and Technology Corporation (JST); WPI program, WPI-iCeMS, Kyoto University; Grant-in-Aid for Scientific Research, the Ministry of Education, Culture, Sports, Science and Technology (MEXT), Japan; Asahi Glass Foundation (to M.E.); Japan Society for the Promotion of Science (JSPS) Postdoctoral fellowship (to A.R.); Aquitaine Regional Council and the ANR program F-DNA, Quarpdiem and Oligoswitch (to P.L.T.T. and J.-L.M.). Funding for open access charge: CREST, JST.
PY - 2013/10/1
Y1 - 2013/10/1
N2 - Guanine-rich oligonucleotides often show a strong tendency to form supramolecular architecture, the so-called G-quadruplex structure. Because of the biological significance, it is now considered to be one of the most important conformations of DNA. Here, we describe the direct visualization and single-molecule analysis of the formation of a tetramolecular G-quadruplex in KCl solution. The conformational changes were carried out by incorporating two duplex DNAs, with G-G mismatch repeats in the middle, inside a DNA origami frame and monitoring the topology change of the strands. In the absence of KCl, incorporated duplexes had no interaction and laid parallel to each other. Addition of KCl induced the formation of a G-quadruplex structure by stably binding the duplexes to each other in the middle. Such a quadruplex formation allowed the DNA synapsis without disturbing the duplex regions of the participating sequences, and resulted in an X-shaped structure that was monitored by atomic force microscopy. Further, the G-quadruplex formation in KCl solution and its disruption in KCl-free buffer were analyzed in real-time. The orientation of the G-quadruplex is often difficult to control and investigate using traditional biochemical methods. However, our method using DNA origami could successfully control the strand orientations, topology and stoichiometry of the G-quadruplex.
AB - Guanine-rich oligonucleotides often show a strong tendency to form supramolecular architecture, the so-called G-quadruplex structure. Because of the biological significance, it is now considered to be one of the most important conformations of DNA. Here, we describe the direct visualization and single-molecule analysis of the formation of a tetramolecular G-quadruplex in KCl solution. The conformational changes were carried out by incorporating two duplex DNAs, with G-G mismatch repeats in the middle, inside a DNA origami frame and monitoring the topology change of the strands. In the absence of KCl, incorporated duplexes had no interaction and laid parallel to each other. Addition of KCl induced the formation of a G-quadruplex structure by stably binding the duplexes to each other in the middle. Such a quadruplex formation allowed the DNA synapsis without disturbing the duplex regions of the participating sequences, and resulted in an X-shaped structure that was monitored by atomic force microscopy. Further, the G-quadruplex formation in KCl solution and its disruption in KCl-free buffer were analyzed in real-time. The orientation of the G-quadruplex is often difficult to control and investigate using traditional biochemical methods. However, our method using DNA origami could successfully control the strand orientations, topology and stoichiometry of the G-quadruplex.
U2 - 10.1093/nar/gkt592
DO - 10.1093/nar/gkt592
M3 - Article
C2 - 23863846
AN - SCOPUS:84885909655
SN - 0305-1048
VL - 41
SP - 8738
EP - 8747
JO - Nucleic Acids Research
JF - Nucleic Acids Research
IS - 18
ER -