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Detection of DNA methyltransferase activity using allosteric molecular beacons

机译:使用变构分子信标检测DNA甲基转移酶活性

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摘要

Abnormal DNA methylation patterns caused by altered DNA methyltransferase (MTase) activity are closely associated with cancer. Herein, using DNA adenine methylation methyltransferase (Dam MTase) as a model analyte, we designed an allosteric molecular beacon (aMB) for sensitive detection of Dam MTase activity. When the specific site in an aMB is methylated by Dam MTase, the probe can be cut by the restriction nuclease DpnI to release a fluorophore labeled aptamer specific for streptavidin (SA) which will bind to SA beads to generate highly fluorescent beads for easy signal readout by a microscope or flow cytometer. However, aMBs maintain a hairpin structure without the binding ability to SA beads in the absence of Dam MTase, leading to weakly fluorescent SA beads. Unlike the existing signal amplified assays, our method is simpler and more convenient. The high performance of the aptamer and the easy bead separation process make this probe superior to other methods for the detection of MTase in complex biological systems. Overall, the proposed method with a detection limit of 0.57 U mL(-1) for Dam MTase shows great potential for further applications in the detection of other MTases, screening of MTase inhibitors, and early diagnosis of cancer.
机译:由DNA甲基转移酶(MTase)活性改变引起的异常DNA甲基化模式与癌症密切相关。本文中,我们使用DNA腺嘌呤甲基化甲基转移酶(Dam MTase)作为模型分析物,设计了一种变构分子信标(aMB),用于敏感检测Dam MTase活性。当aMB中的特定位点被Dam MTase甲基化时,可以用限制性核酸酶DpnI切割探针以释放针对链霉亲和素(SA)的荧光团标记适体,该适体将与SA珠结合,产生高荧光珠,易于信号读出通过显微镜或流式细胞仪。但是,在没有Dam MTase的情况下,aMBs保持发夹结构不具有与SA珠的结合能力,从而导致荧光弱的SA珠。与现有的信号放大测定法不同,我们的方法更简单,更方便。适体的高性能和易于分离的珠子使该探针优于其他在复杂生物系统中检测MTase的方法。总体而言,所提出的方法对Dam MTase的检出限为0.57 U mL(-1),显示出在其他MTase的检测,MTase抑制剂的筛选以及癌症的早期诊断中的进一步应用的巨大潜力。

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