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A quantitative homogeneous assay for global DNA methylation levels using CpG-binding domain- and methyl-CpG-binding domain-fused luciferase

机译:使用CPG结合结构域和甲基-CPG结合结构域 - 融合荧光素酶的全球DNA甲基化水平的定量均匀测定

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AbstractGlobal DNA methylation levels have been considered as biomarkers for cancer diagnostics because transposable elements that constitute approximately 45% of the human genome are hypomethylated in cancer cells. We have previously reported a homogeneous assay for measuring methylated CpG content of genomic DNA based on bioluminescence resonance energy transfer (BRET) using methyl-CpG-binding domain (MBD)-fused luciferase (MBD-luciferase). In this study, a homogeneous assay for measuring unmethylated CpG content of genomic DNA in the same platform was developed using CXXC domain-fused luciferase (CXXC-luciferase) that specifically recognizes unmethylated CpG. In this assay, CXXC-luciferase recognizes unmethylated CpG on genomic DNA, whereby BRET between luciferase and the fluorescent DNA intercalating dye is detected. We demonstrated that the BRET signal depended on the genomic DNA concentration (R2?=?0.99) and unmethylated CpG content determined by the bisulfite method (R2?=?0.97). There was a significant negative correlation between the BRET signal of the CXXC-luciferase-based assay and that of the MBD-luciferase-based assay (R2?=?0.92). Moreover, we demonstrated that the global DNA methylation level determined using the bisulfite method was dependent on the ratio of the BRET signal in the MBD-luciferase-based assay to the total BRET signal in the MBD-luciferase- and CXXC-luciferase-based assays (R2?=?0.99, relative standard deviation?Graphical abstractDisplay OmittedHighlights?Unmethylated CpG binding domain (CXXC domain)-fused luciferase was constructed.?A homogeneous assay for measuring the unmethylated CpG content of genomic DNA by CXXC-luciferase was developed.?Global DNA methylation was quantified by MBD- and CXXC-luciferase without any calibration curve.]]>
机译:<![CDATA [ 抽象 全局DNA甲基化水平被认为是癌症诊断的生物标志物,因为占人类大约45%的转换元素基因组在癌细胞中如下甲基化。我们先前已经报道了使用甲基-CPG结合结构域(MBD)荧光素酶(MBD-荧光素酶)基于生物发光共振能量转移(BRET)测量基因组DNA的甲基化CpG含量的均相测定。在该研究中,使用CXXC结构域稠合荧光素酶(CXXC-LUCIFIRA酶)显着识别未甲基化的CPG,开发用于测量同一平台中未甲基化的CPG含量的均匀测定。在该测定中,CXXC-荧光素酶在基因组DNA上识别未甲基化的CPG,从而检测荧光素酶和荧光DNA嵌入染料之间的布雷。我们证明,BRET信号依赖于基因组DNA浓度(R 2 Δα=Δ0.99)和未甲基化的CPG含量由亚硫酸氢盐法测定(R 2 ?=?0.97)。基于CXXC-荧光素酶的测定的BRET信号与基于MBD-荧光素酶的测定的BRET信号之间存在显着的负相关(R 2 ?=? 0.92)。此外,我们证明了使用亚硫酸氢盐法测定的全局DNA甲基化水平取决于MBD-荧光素酶的测定中的BRET信号与基于MBD-荧光素酶和CXXC-荧光素酶的测定中的总布雷特信号的比例(r 2 ?= 0.99,相对标准偏差?<?2.2%,分析速度?<?35?min)。这些结果表明,通过计算没有任何校准曲线的布雷标号信号比可以量化全局DNA甲基化水平。 图形抽象 省略显示 亮点 未删除的CPG绑定域(C.构建XXC域)-Fused Luciferase。 开发了CXXC-LUCIFIRA酶测量基因组DNA的未甲基化CPG含量的均匀测定。 全局DNA甲基化由MBD-和CXXC-Luciferase定量,没有任何校准曲线。 ]]>

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