Related Experiment Video
Updated: Jun 1, 2025

Single-Molecule Fluorescence Visualization of DNA Polymerase Dynamics at G-Quadruplexes
Published on: April 4, 2025
Na+-concentration dependent conformational switch of oncogene RET G-quadruplex DNA in solution
Shaowen Yin1, Guoqing Niu1, Wenxian Lan2
1State Key Laboratory of Chemical Biology, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, Chinese Academy of Sciences, Shanghai 200032, China.
Abstract:
Proto-oncogene RET is overexpressed in many cancers, and its expression level is positively related to the size and malignancy of the tumors. Effective inhibition of its overexpression can be used to potentially treat cancers. A guanine-rich GC-boxes (I-V) sequence in its promoter region folds into noncanonical G-quadruplex (G4) DNA structures, negatively regulating its expression by interactions with small molecules. Previously, we reported that RET20T in GC-boxes II-V formed parallel G4 only at low concentrations of K+ solutions, and that RET-21mer in GC-boxes I-IV folded into different mixed parallel / antiparallel G4s in 50 mM K+ or 100 mM Na+ solutions. These data implied high complexity in producing G4 topology by cation type. Here, mainly by nuclear magnetic resonance (NMR), we demonstrated that RET20T formed slightly different, but rarely reported inter-convertible mixed parallel / antiparallel G4s dependent on Na+ concentration. Unclassical base-pairs G3•G6 and G14•T20 and ternary plane G3•C5•G6 stabilized these two RET20T G4 structures. These structural evidences enhanced our understanding that generation of a unimolecular G4 structure could be significantly affected by cation concentration and type in buffer, and the oligo sequence. Conformational switch of G4s should be noted before anti-cancer drug screening in future.
Insights
Proto-oncogene RET’s G-quadruplex (G4) DNA structures, crucial for cancer regulation, exhibit complex topologies. RET20T forms inter-convertible G4 structures influenced by sodium ion concentration, impacting anti-cancer drug development.
Area of Science:
- Molecular Biology
- Biochemistry
- Structural Biology
Background:
- Proto-oncogene RET overexpression is linked to cancer progression.
- RET promoter G-rich sequences form G-quadruplex (G4) structures, regulating gene expression.
- Previous studies indicated cation-dependent G4 formation with RET sequences.
Purpose of the Study:
- To elucidate the structural dynamics of RET20T G-quadruplex formation.
- To investigate the influence of sodium ion concentration on RET20T G4 topology.
- To characterize the stabilizing elements within RET20T G4 structures.
Main Methods:
- Nuclear Magnetic Resonance (NMR) spectroscopy was the primary technique.
- Analysis of RET20T G4 structures formed under varying sodium ion concentrations.
- Identification of non-canonical base-pairing and ternary planes.
Main Results:
- RET20T forms inter-convertible mixed parallel/antiparallel G4 structures.
- Sodium ion concentration significantly influences RET20T G4 topology.
- Unclassical G3•G6 base-pairs and G3•C5•G6 ternary planes stabilize the observed G4 structures.
Conclusions:
- G4 structure formation is sensitive to cation type and concentration.
- RET G4 conformational switching is a critical consideration for anti-cancer drug design.
- Understanding G4 dynamics provides insights into gene regulation and therapeutic strategies.
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