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DRONE: Direct Tracking of DNA Cytidine Deamination and Other DNA Modifying Activities

机译:无人机:直接跟踪DNA细胞苷脱胺和其他DNA改性活性

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Enzymes that catalyze DNA modifying activities including cytidine deamination and cytosine methylation play important biological roles and have been implicated pathologically in diseases such as cancer. Here, we report Direct Resolution of ONE dalton difference (DRONE), an ultra high performance liquid chromatography (UHPLC)-based analytical method to track a single dalton change in the cytosine-to-uracil conversion catalyzed by the human apolipoprotein B m-RNA editing catalytic polypeptide-like 3 (APOBEC3) cytidine deaminases, implicated in cancer and antiviral defense. Additionally, we demonstrate broad applicability by tracking other important DNA modifications and assessing epigenetic enzyme inhibition. We have extended our methodology to obtain data on two distinct deamination events in the same oligonucleotide substrate designed from a putative APOBEC substrate, diversifying the utility of the described method. DRONE provides an important foundation for in-depth analysis of DNA-modifying enzymes and versatile detection of novel DNA modifications of interest.
机译:催化DNA改性活动,包括胞苷脱胺和胞嘧啶甲基化的酶起到重要的生物作用,并且在疾病等疾病中涉及病理致力于涉及。在这里,我们报告直接分辨率的一个道尔顿差异(无人机),一种超高效液相色谱(UHPLC)的分析方法,用于跟踪由人载脂蛋白B M-RNA催化的胞嘧啶与尿嘧啶转化率的单一道尔顿变化编辑催化多肽样3(Apobec3)胞苷脱氨酶,涉及癌症和抗病毒防御。此外,我们通过跟踪其他重要的DNA修饰和评估表观遗传酶抑制来证明广泛的适用性。我们已经扩展了我们的方法,以获得与由推定的Apobec衬底设计的同一寡核苷酸衬底中的两个不同的寡核苷酸衬底中的数据,使所描述方法的效用多样化。无人机为DNA改性酶的深入分析和多功能检测感兴趣的新型DNA改性提供了重要的基础。

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