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具有核小体定位序列重复的高产量无连接 DNA 构建体的组装,用于单分子操作分析。

High-yield ligation-free assembly of DNA constructs with nucleosome positioning sequence repeats for single-molecule manipulation assays.

机构信息

Department of Physics and Center for NanoScience (CeNS), LMU Munich, Munich, Germany; Soft Condensed Matter and Biophysics, Department of Physics and Debye Institute for Nanomaterials Science, Utrecht University, Utrecht, The Netherlands.

Department of Physics and Center for NanoScience (CeNS), LMU Munich, Munich, Germany; Division of Molecular Imaging and Photonics, KU Leuven, Leuven, Belgium.

出版信息

J Biol Chem. 2023 Jul;299(7):104874. doi: 10.1016/j.jbc.2023.104874. Epub 2023 May 29.

Abstract

Force and torque spectroscopy have provided unprecedented insights into the mechanical properties, conformational transitions, and dynamics of DNA and DNA-protein complexes, notably nucleosomes. Reliable single-molecule manipulation measurements require, however, specific and stable attachment chemistries to tether the molecules of interest. Here, we present a functionalization strategy for DNA that enables high-yield production of constructs for torsionally constrained and very stable attachment. The method is based on two subsequent PCRs: first ∼380 bp long DNA strands are generated that contain multiple labels, which are used as "megaprimers" in a second PCR to generate ∼kbp long double-stranded DNA constructs with multiple labels at the respective ends. To achieve high-force stability, we use dibenzocyclooctyne-based click chemistry for covalent attachment to the surface and biotin-streptavidin coupling to the bead. The resulting tethers are torsionally constrained and extremely stable under load, with an average lifetime of 70 ± 3 h at 45 pN. The high yield of the approach enables nucleosome reconstitution by salt dialysis on the functionalized DNA, and we demonstrate proof-of-concept measurements on nucleosome assembly statistics and inner turn unwrapping under force. We anticipate that our approach will facilitate a range of studies of DNA interactions and nucleoprotein complexes under forces and torques.

摘要

力和转矩光谱学为 DNA 和 DNA-蛋白质复合物(尤其是核小体)的机械性质、构象转变和动力学提供了前所未有的见解。然而,可靠的单分子操纵测量需要特定且稳定的附着化学来固定感兴趣的分子。在这里,我们提出了一种用于 DNA 的功能化策略,该策略能够高效地生产用于扭转约束和非常稳定附着的构建体。该方法基于两个连续的 PCR:首先生成大约 380 bp 长的 DNA 链,该链包含多个标签,这些标签用作第二个 PCR 中的“megaprimers”,以生成大约 kbp 长的双链 DNA 构建体,其在相应末端具有多个标签。为了实现高力稳定性,我们使用基于二苯并环辛炔的点击化学进行共价附着到表面,并使用生物素-链霉亲和素偶联到珠上。由此产生的系链受到扭转约束,在负载下极其稳定,在 45 pN 下平均寿命为 70 ± 3 h。该方法的高产量能够通过功能化 DNA 上的盐透析进行核小体重组,并且我们证明了在力下核小体组装统计和内转角展开的概念验证测量。我们预计,我们的方法将促进在力和转矩下对 DNA 相互作用和核蛋白复合物的一系列研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea50/10404619/3116137d9bcc/gr1.jpg

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