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◆ Biosensors & bioelectronics2026-08-26

TdT-assisted DNA elongation amplification enables highly sensitive label-free electrochemical detection of DNA methyltransferase.

Chuang Wang, Yue Peng, Yuanyuan Miao, Xinyuan Sun, Qianlei Zhang, Zhaokun Zheng, Wenting Cheng, Jinlong Li

原始摘要(英文原文)· Original abstract
Aberrant DNA methylation has emerged as a critical epigenetic biomarker closely associated with bacterial pathogenicity and human tumorigenesis. In this study, a highly sensitive and label-free electrochemical biosensor has been developed for the detection of Dam MTase activity. 3'-aminated hairpin DNA probes (HP1) containing Dam MTase-specific recognition sites are immobilized onto the surface of a gold electrode. In the presence of Dam MTase, HP1 is methylated and subsequently cleaved by DpnI, thereby exposing free 3'-hydroxyl groups. These hydroxyl groups serve as primers and are extended by terminal deoxynucleotidyl transferase (TdT) to generate long poly-thymine (polyT) tails. As an electrochemical redox indicator with numerous positive charges, ruthenium hexaammine trichloride (RuHex) can be captured by negatively charged DNA extension products. Accordingly, a remarkably enhanced electrochemical signal is produced, and the signal response is proportional to methyltransferase activity. This biosensor exhibits a good linear relationship in the range of 0.1 U/mL to 20 U/mL, and the limit of detection (LOD) is as low as 0.57 U/mL. Furthermore, its application value has been verified through the successful screening of existing MTase inhibitors (5-fluorouracil and gentamicin), indicating its potential application prospects in clinical diagnosis and antibacterial drug screening.
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TdT-assisted DNA elongation amplification enables highly sensitive label-free electrochemical detection of DNA methyltransferase. — 科研速览 Science Skim