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一种利用高盐凝胶电洗脱阱进行核酸分离的改良方法和装置。

An Improved Method and Device for Nucleic Acid Isolation Using a High-Salt Gel Electroelution Trap.

机构信息

National Laboratory Astana, Nazarbayev University, Kabanbay batyr Ave. 53, Astana, 010000, Kazakhstan.

Department of Microbiology, University of Helsinki, Viikinkaari 9, Helsinki 00014, Finland.

出版信息

Anal Chem. 2024 Oct 1;96(39):15526-15530. doi: 10.1021/acs.analchem.4c03720. Epub 2024 Sep 17.

Abstract

The success of DNA analytical methods, including long-read sequencing, depends on the availability of high-quality, purified DNA. Previously, we developed a method and device for isolating high-molecular-weight (HMW) DNA for long-read sequencing using a high-salt gel electroelution trap. Here, we present an improved version of this method for purifying nucleic acids with high yield and purity from even the most challenging biological samples. The proposed method is a significant improvement over the previously published procedure, offering a simple, fast, and efficient solution for isolating HMW DNA and smaller DNA and RNA molecules. The method utilizes vertical gel electrophoresis in two nested, partially overlapping electrophoretic columns. The upper, smaller-diameter column has a thin layer of agarose gel at the bottom, which separates nucleic acids from impurities, and an electrophoresis buffer on top. After the target nucleic acid has been gel-purified on the upper column, a larger-diameter column with a layer of high-salt gel overlaid with electrophoresis buffer is inserted from below. The purified nucleic acid is then electroeluted into the buffer-filled gap between the separating gel and the high-salt gel, where excess counterions from the high-salt gel slow its migration and cause it to accumulate. The proposed vertical purification system outperforms the previously described horizontal system in terms of ease of use, speed, scalability, and compatibility with high-throughput workflows. Furthermore, the vertical system allows for the sequential purification of several nucleic acid species from the same sample using interchangeable salt-gel columns.

摘要

DNA 分析方法(包括长读测序)的成功依赖于高质量、纯化的 DNA 的可用性。此前,我们开发了一种使用高盐凝胶电洗脱陷阱分离长读测序用高分子量(HMW)DNA 的方法和装置。在这里,我们提出了一种改进的方法,可从即使是最具挑战性的生物样本中以高产量和高纯度纯化核酸。与之前发表的程序相比,该方法是一个重大改进,为分离 HMW DNA 以及较小的 DNA 和 RNA 分子提供了一种简单、快速、有效的解决方案。该方法利用两个嵌套的、部分重叠的电泳柱进行垂直凝胶电泳。上柱的直径较小,底部有一层薄薄的琼脂糖凝胶,用于分离核酸和杂质,顶部有电泳缓冲液。在上柱中对目标核酸进行凝胶纯化后,从下方插入一个直径较大的柱,其顶部覆盖有一层高盐凝胶和电泳缓冲液。然后,将纯化的核酸电洗脱至分离胶和高盐胶之间充满缓冲液的间隙中,高盐胶中的过量抗衡离子会减缓其迁移速度并使其聚集。与之前描述的水平系统相比,所提出的垂直纯化系统在易用性、速度、可扩展性以及与高通量工作流程的兼容性方面表现出色。此外,垂直系统允许使用可互换的盐凝胶柱从同一样本中顺序纯化几种核酸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b884/11447668/8089558e40f2/ac4c03720_0001.jpg

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