Suppr超能文献

气相中PNA/DNA/PNA三链体的电荷依赖性行为。

Charge dependent behavior of PNA/DNA/PNA triplexes in the gas phase.

作者信息

Delvolvé Alice, Tabet Jean-Claude, Bregant Sarah, Afonso Carlos, Burlina Fabienne, Fournier Françoise

机构信息

University Pierre et Marie Curie, CNRS-UMR 7613, Synthèse, Structure et Fonction de Molécules Bioactives, FR 2769, Case Courrier 45, 4 place Jussieu, 75005 Paris, France.

出版信息

J Mass Spectrom. 2006 Nov;41(11):1498-508. doi: 10.1002/jms.1124.

Abstract

Intact noncovalent complexes were studied in the gas phase using negative ion nano-ESI mass spectrometry. Among various noncovalent systems studied in the gas phase, the interaction of DNA strands with peptide nucleic acids (PNAs) presents a strong interest as biologically relevant systems. PNAs originally described by Nielsen are used as DNA mimics as possible medical agents by imprisoning DNA single strands into stable noncovalent complexes. Two types of PNAs were investigated in the PNA/DNA multiplex: the original Nielsen's PNA and a modified backbone PNA by the introduction of syn- and anti-(aminoethyl)thiazolidine rings. We first investigated the stoichiometry of PNA/DNA multiplexes formed in solution and observed them in the gas phase via qualitative kinetics of complementary strand associations. It resulted in observing PNA2/DNA triplexes (ts) as the multiply deprotonated species, most stable in both the solution and gas phase. Second, charge-dependant decompositions of these species were undertaken under low-energy collision conditions. It appears that covalent bond cleavages (base releasing or skeleton cleavage) occur from lower ts charge states rather than ts unzipping, which takes place from higher charge states. This behavior can be explained by considering the presence of zwitterions depending on the charge state. They result in strong salt-bridge interactions between the positively charged PNA side chain and the negatively charged DNA backbone. We propose a general model to clearly display the involved patterns in the noncovalent triplex decompositions. Third, the relative stability of three PNA2/DNA complexes was scrutinized in the gas phase by acquiring the breakdown curves of their ts(6-) form, corresponding to the ts unzipping. The chemical structures of the studied PNAs were chosen in order to evidence the possible influence of backbone stereochemistry on the rigidity of PNA2/DNA complexes. It provided significantly different stabilities via V(m) measurements. The relative gas-phase stability order obtained was compared to that found in solution by Chassaing et al., and shows qualitative agreement.

摘要

使用负离子纳米电喷雾质谱法在气相中研究完整的非共价复合物。在气相中研究的各种非共价体系中,DNA链与肽核酸(PNA)的相互作用作为具有生物学相关性的体系引起了强烈关注。最初由尼尔森描述的PNA通过将DNA单链囚禁到稳定的非共价复合物中,被用作可能的医学试剂的DNA模拟物。在PNA/DNA复合物中研究了两种类型的PNA:原始的尼尔森PNA和通过引入顺式和反式(氨基乙基)噻唑烷环修饰主链的PNA。我们首先研究了溶液中形成的PNA/DNA复合物的化学计量,并通过互补链缔合的定性动力学在气相中观察它们。结果观察到PNA2/DNA三链体(ts)作为多重去质子化物种,在溶液和气相中都是最稳定的。其次,在低能碰撞条件下对这些物种进行了电荷依赖性分解。似乎共价键断裂(碱基释放或骨架断裂)发生在较低的ts电荷状态,而不是ts解链,ts解链发生在较高的电荷状态。这种行为可以通过考虑取决于电荷状态的两性离子的存在来解释。它们导致带正电的PNA侧链与带负电的DNA主链之间形成强盐桥相互作用。我们提出了一个通用模型来清楚地展示非共价三链体分解中涉及的模式。第三,通过获取其ts(6-)形式的分解曲线,在气相中仔细研究了三种PNA2/DNA复合物的相对稳定性,对应于ts解链。选择所研究PNA的化学结构以证明主链立体化学对PNA2/DNA复合物刚性的可能影响。通过V(m)测量提供了显著不同的稳定性。将获得的相对气相稳定性顺序与Chassaing等人在溶液中发现的顺序进行比较,显示出定性一致性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验