Identification and Quantification of Locus-Specific 8-Oxo-7,8-dihydroguanine in DNA at Ultrahigh Resolution Based on G-Triplex-Assisted Rolling Circle Amplification.
Jia-Hui DongRun-Hong ZhangLing-Li ZhaoChen-Yu XueHui-Yu PanXin-Ying ZhongYing-Lin ZhouXin-Xiang ZhangPublished in: Analytical chemistry (2023)
Damage of reactive oxygen species to various molecules such as DNA has been related to many chronic and degenerative human diseases, aging, and even cancer. 8-Oxo-7,8-dihydroguanine (OG), the most significant oxidation product of guanine (G), has become a biomarker of oxidative stress as well as gene regulation. The positive effect of OG in activating transcription and the negative effect in inducing mutation are a double-edged sword; thus, site-specific quantification is helpful to quickly reveal the functional mechanism of OG at hotspots. Due to the possible biological effects of OG at extremely low abundance in the genome, the monitoring of OG is vulnerable to signal interference from a large amount of G. Herein, based on rolling circle amplification-induced G-triplex formation and Thioflavin T fluorescence enhancement, an ultrasensitive strategy for locus-specific OG quantification was constructed. Owing to the difference in the hydrogen-bonding pattern between OG and G, the nonspecific background signal of G sites was completely suppressed through enzymatic ligation of DNA probes and the triggered specificity of rolling circle amplification. After the signal amplification strategy was optimized, the high detection sensitivity of OG sites with an ultralow detection limit of 0.18 amol was achieved. Under the interference of G sites, as little as 0.05% of OG-containing DNA was first distinguished. This method was further used for qualitative and quantitative monitoring of locus-specific OG in genomic DNA under oxidative stress and identification of key OG sites with biological function.
Keyphrases
- nucleic acid
- single molecule
- oxidative stress
- circulating tumor
- cell free
- label free
- reactive oxygen species
- squamous cell carcinoma
- diabetic rats
- endothelial cells
- small molecule
- hydrogen peroxide
- genome wide
- transcription factor
- papillary thyroid
- single cell
- gold nanoparticles
- ischemia reperfusion injury
- wastewater treatment
- signaling pathway
- living cells
- loop mediated isothermal amplification
- young adults
- lymph node metastasis
- real time pcr
- genome wide association study
- heat stress
- liquid chromatography
- childhood cancer