甲基转移酶
化学
纳米孔
DNA甲基转移酶
DNA
核酸内切酶
甲基化
DNA甲基化
多路复用
分子信标
生物传感器
限制性酶
分子生物学
生物物理学
生物化学
计算生物学
寡核苷酸
纳米技术
生物
基因
遗传学
基因表达
材料科学
作者
Siqi Zhang,Wei Shi,Kai-Bin Li,Deman Han,Jing‐Juan Xu
标识
DOI:10.1021/acs.analchem.1c05332
摘要
DNA methylation is catalyzed by a family of DNA methyltransferases that play crucial roles in various biological processes. Therefore, an ultrasensitive methyltransferase assay is highly desirable in biomedical research and clinical diagnosis. However, conventional assays for the detection of DNA methyltransferase activity often involve radioactive labeling, costly equipment, and laborious operation. In this study, an ultrasensitive and label-free method for detecting DNA adenine methyltransferase (Dam) and CpG methyltransferase (M.SssI) was developed using the nanopore technique coupled with DNA cascade signal amplification reactions. A hairpin DNA (HD) comprising of the methylation-responsive sequences was skillfully designed. In the presence of Dam methyltransferase, the corresponding recognition site of hairpin HD was methylated and specifically cleaved by DpnI endonuclease, thus forming a DNA fragment that induces the catalytic hairpin assembly and hybridization chain reaction (CHA–HCR). The generated products could be absorbed onto the Zr4+-coated nanopore, resulting in an ion current rectification signal change. Considering the high sensitivity of the nanopore and excellent specificity toward the recognition of methyltransferase/endonuclease, our developed method could detect both Dam and M.SssI methyltransferases in the same sensing platform. Furthermore, the designed nanopore sensor could realize the multiplex detection of Dam and M.SssI methyltransferases after integration with the cascaded INHIBIT–AND logic gate. This ultrasensitive methyltransferase assay holds great promise in the field of cancer diagnosis.
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