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Development and Application of G4-Flame as a Visual Biosensor for G4-DNA

GSE314730 Homo sapiens Genome binding/occupancy profiling by high throughput sequencing 8 samples Submitted 2026/02/20 Platform GPL29480
Summary
G4-DNA, a non-canonical tetrahelical nucleic acid structure stabilized by stacked G-quartets via Hoogsteen hydrogen bonding, plays critical roles in genomic regulation and disease pathogenesis. Current methodologies for detecting these structures face limitations in specificity, spatiotemporal resolution, and live-cell applicability. To address these challenges, we engineered G4-Flame, a genetically encoded fluorescent biosensor utilizing Circularly Permuted Fluorescent Protein (CPFP) technology. By strategically positioning a G4-specific binding domain proximal to the fluorophore of circularly permuted YFP (cpYFP), G4-Flame achieves real-time, high-resolution visualization of G4-DNA dynamics in living systems, with specificity across diverse G4 conformations. Experimental validation revealed distinct spatiotemporal patterns of G4-DNA during the cell cycle: nuclear G4-DNA levels peaked during the S phase, while mitochondrial G4-DNA was found to suppress the expression of mitochondrial-encoded genes. Clinically, serum analysis revealed significantly elevated G4-DNA levels in cancer patients compared to healthy controls. This work establishes G4-Flame as a transformative tool for investigating G4-DNA spatiotemporal regulation and advances its potential as a biomarker for early cancer detection, bridging fundamental research with clinical translation.
Published in
Development and application of G4-Flame as a visual biosensor for G4-DNA
Liu R, Wang T, Wang C et al. · Nucleic acids research 2026 · PMID 41873758 · doi:10.1093/nar/gkag179
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Also filed as BioProject PRJNA1392511 and SRA study SRP657329. Searching any of these in the dataset finder brings you back here.

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