delToro Damian J, Smith Douglas E
Department of Physics, University of California San Diego, La Jolla, CA, USA.
Methods Mol Biol. 2018;1805:371-392. doi: 10.1007/978-1-4939-8556-2_19.
The unwinding of double-stranded DNA is a frequently occurring event during the cellular processes of DNA replication, repair, and transcription. To help further investigate properties of this fundamental process as well as to study proteins acting on unzipped DNA at the single molecule level, we describe a novel method for efficient preparation of long DNA constructs (arbitrary sequences of many kilobasepairs (kbp) in length) that can be forcibly unzipped and manipulated with optical tweezers or other single-molecule manipulation techniques. This method utilizes PCR, a nicking endonuclease, and strand displacement synthesis by the Klenow fragment of DNA polymerase I to introduce labeled nucleotides at appropriate positions to facilitate unzipping of the DNA by application of force. We also describe various optical tweezers measurement modes for measuring DNA unzipping and rezipping. These methods have applications to studying helicases and DNA binding proteins.
双链DNA的解旋是DNA复制、修复和转录等细胞过程中经常发生的事件。为了进一步研究这一基本过程的特性,以及在单分子水平上研究作用于解链DNA的蛋白质,我们描述了一种高效制备长DNA构建体(长度为许多千碱基对(kbp)的任意序列)的新方法,该构建体可以用光学镊子或其他单分子操作技术进行强制解链和操作。该方法利用聚合酶链反应(PCR)、切口内切酶以及DNA聚合酶I的Klenow片段进行链置换合成,在适当位置引入标记核苷酸,以便通过施加力来促进DNA解链。我们还描述了用于测量DNA解链和重新双链化的各种光学镊子测量模式。这些方法可应用于研究解旋酶和DNA结合蛋白。