利用液滴内氢/氘交换质谱分析 DNA 结构

IF 1.6 3区 化学 Q3 PHYSICS, ATOMIC, MOLECULAR & CHEMICAL
Kushani Attanayake , Sultan Mahmud , Chandrima Banerjee, Daud Sharif, Mohammad Rahman, Sandra Majuta, Anthony DeBastiani, Mst Nigar Sultana, Samira Hajian Foroushani, Chong Li, Peng Li, Stephen J. Valentine
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引用次数: 0

摘要

毛细管振动锐边喷雾电离(cVSSI)与氢/氘交换质谱(HDX-MS)相结合,用于表征不同的溶液相 DNA 构象,包括 DNA G-四重拓扑结构以及三重 DNA 和双工 DNA。一般来说,G-四链DNA的氢保护范围很广,从掺入氘的12%到21%不等。此外,代表平行、反平行和混合 G 型四叠体拓扑结构的 DNA 序列在氘吸收水平上也略有不同,这似乎与整体构象的稳定性密切相关。值得注意的是,G-四叠体 DNA(24 TTG)的一个混合序列子拓扑的交换水平(与本文研究的其他序列相比)有显著差异,尽管 DNA 序列非常相似。对于四重形成序列,相关性分析表明,参与四重氢键的碱基氢根受到保护。双链 DNA 的氘结合率为 19%,而三链 DNA 的氘结合率仅为 16%。对氢的保护增加可能是由于后一种DNA增加了骨架支架和Hoogsteen碱基配对。这些实验为今后的研究奠定了基础,这些研究旨在确定这种保护的结构来源,以及这种方法在确定不同寡核苷酸折叠、共存构象和/或整体构象灵活性方面的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Examining DNA structures with in-droplet hydrogen/deuterium exchange mass spectrometry

Examining DNA structures with in-droplet hydrogen/deuterium exchange mass spectrometry

Capillary vibrating sharp-edge spray ionization (cVSSI) combined with hydrogen/deuterium exchange-mass spectrometry (HDX-MS) has been utilized to characterize different solution-phase DNA conformers including DNA G-quadruplex topologies as well as triplex DNA and duplex DNA. In general, G-quadruplex DNA shows a wide range of protection of hydrogens extending from ∼12% to ∼21% deuterium incorporation. Additionally, the DNA sequences selected to represent parallel, antiparallel, and hybrid G-quadruplex topologies exhibit slight differences in deuterium uptake levels which appear to loosely relate to overall conformer stability. Notably, the exchange level for one of the hybrid sequence sub topologies of G-quadruplex DNA (24 TTG) is significantly different (compared with the others studied here) despite the DNA sequences being highly comparable. For the quadruplex-forming sequences, correlation analysis suggests protection of base hydrogens involved in tetrad hydrogen bonding. For duplex DNA ∼19% deuterium incorporation is observed while only ∼16% is observed for triplex DNA. This increased protection of hydrogens may be due to the added backbone scaffolding and Hoogsteen base pairing of the latter species. These experiments lay the groundwork for future studies aimed at determining the structural source of this protection as well as the applicability of the approach for ascertaining different oligonucleotide folds, co-existing conformations, and/or overall conformer flexibility.

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来源期刊
CiteScore
3.60
自引率
5.60%
发文量
145
审稿时长
71 days
期刊介绍: The journal invites papers that advance the field of mass spectrometry by exploring fundamental aspects of ion processes using both the experimental and theoretical approaches, developing new instrumentation and experimental strategies for chemical analysis using mass spectrometry, developing new computational strategies for data interpretation and integration, reporting new applications of mass spectrometry and hyphenated techniques in biology, chemistry, geology, and physics. Papers, in which standard mass spectrometry techniques are used for analysis will not be considered. IJMS publishes full-length articles, short communications, reviews, and feature articles including young scientist features.
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