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基于纳米刻蚀槽和荧光 DNA 结合蛋白的高通量单分子成像系统。

High-throughput single-molecule imaging system using nanofabricated trenches and fluorescent DNA-binding proteins.

机构信息

School of Life Sciences, Ulsan National Institute of Science and Technology, Ulsan, Republic of Korea.

Department of Physics and Astronomy, Seoul National University, Seoul, Republic of Korea.

出版信息

Biotechnol Bioeng. 2020 Jun;117(6):1640-1648. doi: 10.1002/bit.27331. Epub 2020 Apr 6.

DOI:10.1002/bit.27331
PMID:32162675
Abstract

DNA curtain is a high-throughput system, integrating a lipid bilayer, fluorescence imaging, and microfluidics to probe protein-DNA interactions in real-time and has provided in-depth understanding of DNA metabolism. Especially, the microfluidic platform of a DNA curtain is highly suitable for a biochip. In the DNA curtain, DNA molecules are aligned along chromium nanobarriers, which are fabricated on a slide surface, and visualized using an intercalating dye, YOYO-1. Although the chromium barriers confer precise geometric alignment of DNA, reuse of the slides is limited by wear of the barriers during cleaning. YOYO-1 is rapidly photobleached and causes photocleavage of DNA under continuous laser illumination, restricting DNA observation to a brief time window. To address these challenges, we developed a new nanopatterned slide, upon which carved nanotrenches serve as diffusion barriers. The nanotrenches were robust under harsh cleaning conditions, facilitating the maintenance of surface cleanliness that is essential to slide reuse. We also stained DNA with a fluorescent protein with a DNA-binding motif, fluorescent protein-DNA binding peptide (FP-DBP). FP-DBP was slowly photobleached and did not cause DNA photocleavage. This new DNA curtain system enables a more stable and repeatable investigation of real-time protein-DNA interactions and will serve as a good platform for lab-on-a-chip.

摘要

DNA 帘幕是一种高通量系统,集成了脂质双层、荧光成像和微流控技术,可实时探测蛋白质-DNA 相互作用,深入了解 DNA 代谢。特别是,DNA 帘幕的微流控平台非常适合生物芯片。在 DNA 帘幕中,DNA 分子沿着铬纳米条带排列,这些纳米条带是在载玻片表面制造的,并使用嵌入染料 YOYO-1 进行可视化。尽管铬条带赋予了 DNA 的精确几何对准,但由于在清洁过程中条带磨损,幻灯片的重复使用受到限制。YOYO-1 迅速光漂白,并在连续激光照射下导致 DNA 光解,限制了 DNA 的观察时间窗口。为了解决这些挑战,我们开发了一种新的纳米图案化载玻片,其上雕刻的纳米沟槽用作扩散屏障。纳米沟槽在苛刻的清洁条件下坚固耐用,有助于维持表面清洁度,这对于幻灯片的重复使用至关重要。我们还使用带有 DNA 结合基序的荧光蛋白——荧光蛋白-DNA 结合肽(FP-DBP)对 DNA 进行染色。FP-DBP 光漂白缓慢,不会导致 DNA 光解。这种新的 DNA 帘幕系统能够更稳定、更可重复地研究实时蛋白质-DNA 相互作用,将成为芯片实验室的良好平台。

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