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首页> 外文期刊>Angewandte Chemie >Programmable and Highly Resolved In Vitro Detection of 5-Methylcytosine by TALEs
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Programmable and Highly Resolved In Vitro Detection of 5-Methylcytosine by TALEs

机译:通过TALE可编程且高度解析的体外检测5-甲基胞嘧啶

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Gene expression is extensively regulated by specific patterns of genomic 5-methylcytosine (mC), but the ability to directly detect this modification at user-defined genomic loci is limited. One reason is the lack of molecules that discriminate between mC and cytosine (C) and at the same time provide inherent, programmable sequence-selectivity. Programmable transcription-activator-like effectors (TALEs) have been observed to exhibit mC-sensitivity in vivo, but to only a limited extent in vitro. We report an mC-detection assay based on TALE control of DNA replication that displays unexpectedly strong mC-discrimination ability in vitro. The status and level of mC modification at single positions in oligonucleotides can be determined unambiguously by this assay, independently of the overall target sequence. Moreover, discrimination is reliably observed for positions bound by N-terminal and central regions of TALEs. This indicates the wide scope and robustness of the approach for highly resolved mC detection and enabled the detection of a single mC in a large, eukaryotic genome.
机译:基因表达受到基因组5-甲基胞嘧啶(mC)特定模式的广泛调控,但是在用户定义的基因组位点直接检测这种修饰的能力受到限制。原因之一是缺乏能够区分mC和胞嘧啶(C)并同时提供固有的可编程序列选择性的分子。已经观察到可编程的转录激活因子样效应物(TALE)在体内表现出mC敏感性,但在体外仅表现出有限的程度。我们报告了基于TALE控制的DNA复制的mC检测分析,该检测在体外显示出出乎意料的强大的mC区分能力。寡核苷酸中单个位置上mC修饰的状态和水平可以通过此测定法明确确定,而与总靶序列无关。此外,可以可靠地观察到由TALE的N末端和中心区域限制的位置的区分。这表明了用于高度解析的mC检测的方法的广泛范围和鲁棒性,并使得能够在大的真核基因组中检测单个mC。

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