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通过双水相系统实现 DNA/碳纳米管杂交体的完全解析。

Toward Complete Resolution of DNA/Carbon Nanotube Hybrids by Aqueous Two-Phase Systems.

机构信息

Beijing National Laboratory for Molecular Science, Key Laboratory for the Physics and Chemistry of Nanodevices, State Key Laboratory of Rare Earth Materials Chemistry and Applications, College of Chemistry and Molecular Engineering , Peking University , Beijing 100871 , China.

Materials Science and Engineering Division , National Institute of Standards and Technology , 100 Bureau Drive , Gaithersburg , Maryland 20899 , United States.

出版信息

J Am Chem Soc. 2019 Dec 26;141(51):20177-20186. doi: 10.1021/jacs.9b09953. Epub 2019 Dec 12.

Abstract

Sequence-dependent interactions between DNA and single-wall carbon nanotubes (SWCNTs) are shown to provide resolution for the atomic-structure-based sorting of DNA-wrapped SWCNTs. Previous studies have demonstrated that aqueous two-phase (ATP) systems are very effective for sorting DNA-wrapped SWCNTs (DNA-SWCNTs). However, most separations have been carried out with a polyethylene glycol (PEG)/polyacrylamide (PAM) ATP system, which shows severe interfacial trapping for many DNA-SWCNT dispersions, resulting in significant material loss and limiting multistage extraction. Here, we report a study of several new ATP systems for sorting DNA-SWCNTs. We have developed a convenient method to explore these systems without knowledge of the corresponding phase diagram. We further show that the molecular weight of the polymer strongly affects the partition behavior and separation results for DNA-SWCNTs in PEG/dextran (DX) ATP systems. This leads to the identification of the PEG1.5kDa/DX250kDa ATP system as an effective vehicle for the chirality separation of DNA-SWCNTs. Additionally, this ATP system exhibits greatly reduced interfacial trapping, enabling for the first time continuous multistep sorting of four species of SWCNTs from a single dispersion. Enhanced stability of DNA-SWCNTs in the PEG1.5kDa/DX250kDa ATP system also allows us to investigate pH dependent sorting of SWCNTs wrapped by C-rich sequences. Our observations suggest that hydrogen bonding may form between the DNA bases at lower pH, enabling a more ordered wrapping structure on the SWCNTs and improvement in sorting (11,0). Together, these findings reveal that the new ATP system is suitable for searching DNA sequences leading toward more complete resolution of DNA-SWCNTs. A new concept of "resolving sequences", evolved from the old notion of "recognition sequences", is proposed to describe a broader range of behaviors of DNA/SWCNT interactions and sorting.

摘要

DNA 与单壁碳纳米管 (SWCNT) 之间的序列依赖性相互作用被证明为基于原子结构的 DNA 包裹 SWCNT 分类提供了分辨率。以前的研究已经证明,水相两相 (ATP) 系统对于分离 DNA 包裹的 SWCNT (DNA-SWCNT) 非常有效。然而,大多数分离都是使用聚乙二醇 (PEG)/聚丙酰胺 (PAM) ATP 系统进行的,该系统对许多 DNA-SWCNT 分散体显示出严重的界面捕获,导致大量材料损失,并限制多步提取。在这里,我们报告了对几种新的 ATP 系统用于分离 DNA-SWCNT 的研究。我们开发了一种方便的方法来探索这些系统,而无需了解相应的相图。我们进一步表明,聚合物的分子量强烈影响 PEG/葡聚糖 (DX) ATP 系统中 DNA-SWCNT 的分配行为和分离结果。这导致鉴定 PEG1.5kDa/DX250kDa ATP 系统作为 DNA-SWCNT 手性分离的有效载体。此外,该 ATP 系统表现出大大减少的界面捕获,首次能够从单一分散体中连续多步分离四种类型的 SWCNT。DNA-SWCNT 在 PEG1.5kDa/DX250kDa ATP 系统中的稳定性增强还允许我们研究富 C 序列包裹的 SWCNT 的 pH 依赖性分离。我们的观察表明,在较低的 pH 值下,DNA 碱基之间可能形成氢键,从而在 SWCNT 上形成更有序的包裹结构,并改善分离效果 (11,0)。这些发现表明,新的 ATP 系统适合于搜索导致 DNA-SWCNT 更完全分辨率的 DNA 序列。提出了一个新的概念,即“分辨序列”,它是从旧的“识别序列”概念演变而来的,用于描述 DNA/SWCNT 相互作用和分类的更广泛的行为。

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