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基于核酸内切酶的多个位点 DNA 内标记。

Nicking enzyme-based internal labeling of DNA at multiple loci.

机构信息

Biotechnology Center, Dresden University of Technology, Dresden, Germany.

出版信息

Nat Protoc. 2012 Mar 8;7(4):643-53. doi: 10.1038/nprot.2012.008.

Abstract

The labeling of biomolecules has become standard practice in molecular biosciences. Modifications are used for detection, sorting and isolation of small molecules, complexes and entire cells. We have recently reported a method for introducing internal chemical and structural modifications into kbp-sized DNA target substrates that are frequently used in single-molecule experiments. It makes use of nicking enzymes that create single-stranded DNA gaps, which can be subsequently filled with labeled oligonucleotides. Here we provide a detailed protocol and further expand this method. We show that modifications can be introduced at distant loci within one molecule in a simple one-pot reaction. In addition, we achieve labeling on both strands at a specific locus, as demonstrated by Förster resonance energy transfer (FRET) experiments. The protocol requires an initial cloning of the target substrate (3-5 d), whereas the labeling itself takes 4-6 h. More elaborate purification and verification of label incorporation requires 2 h for each method.

摘要

生物分子的标记已成为分子生物科学中的标准操作。修饰用于小分子、复合物和整个细胞的检测、分类和分离。我们最近报道了一种在单分子实验中常用的 kbp 大小的 DNA 靶标底物中引入内部化学和结构修饰的方法。它利用能够产生单链 DNA 缺口的切口酶,随后可以用标记的寡核苷酸填充这些缺口。在这里,我们提供了一个详细的方案,并进一步扩展了这个方法。我们表明,修饰可以在一个分子内的远距离位置在一个简单的一锅反应中引入。此外,我们通过Förster 共振能量转移 (FRET) 实验证明,可以在特定位置的两条链上进行标记。该方案需要对靶标底物进行初始克隆(3-5 天),而标记本身需要 4-6 小时。对于每种方法,更复杂的标记物掺入的纯化和验证需要 2 小时。

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