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设计、组装和表征跨膜 DNA 纳米孔。

Design, assembly, and characterization of membrane-spanning DNA nanopores.

机构信息

Department of Chemistry & Institute of Structural Molecular Biology, University College London, London, UK.

出版信息

Nat Protoc. 2021 Jan;16(1):86-130. doi: 10.1038/s41596-020-0331-7. Epub 2020 Dec 21.

Abstract

DNA nanopores are bio-inspired nanostructures that control molecular transport across lipid bilayer membranes. Researchers can readily engineer the structure and function of DNA nanopores to synergistically combine the strengths of DNA nanotechnology and nanopores. The pores can be harnessed in a wide range of areas, including biosensing, single-molecule chemistry, and single-molecule biophysics, as well as in cell biology and synthetic biology. Here, we provide a protocol for the rational design of nanobarrel-like DNA pores and larger DNA origami nanopores for targeted applications. We discuss strategies for the pores' chemical modification with lipid anchors to enable them to be inserted into membranes such as small unilamellar vesicles (SUVs) and planar lipid bilayers. The procedure covers the self-assembly of DNA nanopores via thermal annealing, their characterization using gel electrophoresis, purification, and direct visualization with transmission electron microscopy and atomic force microscopy. We also describe a gel assay to determine pore-membrane binding and discuss how to use single-channel current recordings and dye flux assays to confirm transport through the pores. We expect this protocol to take approximately 1 week to complete for DNA nanobarrel pores and 2-3 weeks for DNA origami pores.

摘要

DNA 纳米孔是受生物启发的纳米结构,可控制脂质双层膜上的分子传输。研究人员可以轻松地对 DNA 纳米孔的结构和功能进行工程设计,以协同结合 DNA 纳米技术和纳米孔的优势。这些孔可应用于广泛的领域,包括生物传感、单分子化学和单分子生物物理学,以及细胞生物学和合成生物学。在这里,我们提供了一种用于合理设计纳米桶状 DNA 孔和更大的 DNA 折纸纳米孔以实现靶向应用的方案。我们讨论了用脂质锚定物对孔进行化学修饰的策略,以使它们能够插入小单层囊泡 (SUV) 和平面脂质双层等膜中。该程序涵盖了 DNA 纳米孔通过热退火进行自组装、使用凝胶电泳进行表征、通过透射电子显微镜和原子力显微镜进行纯化和直接可视化。我们还描述了一种凝胶测定法来确定孔-膜结合,并讨论了如何使用单通道电流记录和染料通量测定法来确认通过孔的传输。我们预计这个方案完成 DNA 纳米桶孔大约需要 1 周,而 DNA 折纸孔则需要 2-3 周。

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