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用于筛选单链DNA模板自组装体特异性和稳定性的电喷雾电离质谱分析

Electrospray-ionization mass spectrometry for screening the specificity and stability of single-stranded-DNA templated self-assemblies.

作者信息

Janssen Pim G A, van Dongen Joost L J, Meijer E W, Schenning Albertus P H J

机构信息

Laboratory of Macromolecular and Organic Chemistry, Eindhoven University of Technology, PO Box 513, 5600 MB Eindhoven, The Netherlands.

出版信息

Chemistry. 2009;15(2):352-60. doi: 10.1002/chem.200801506.

Abstract

Supramolecular complexes consisting of a single-stranded oligothymine (dTn) as the host template and an array of guest molecules equipped with a complementary diaminotriazine hydrogen-bonding unit have been studied with electrospray-ionization mass spectrometry (ESI-MS). In this hybrid construct, a supramolecular stack of guest molecules is hydrogen bonded to dTn. By changing the hydrogen-bonding motif of the DNA host template or the guest molecules, selective hydrogen bonding was proven. We were able to detect single-stranded-DNA (ssDNA)-guest complexes for strands with lengths of up to 20 bases, in which the highest complex mass detected was 15 kDa; these complexes constitute 20-component self-assembled objects. Gas-phase breakdown experiments on single- and multiple-guest-DNA assemblies gave qualitative information on the fragmentation pathways and the relative complex stabilities. We found that the guest molecules are removed from the template one by one in a highly controlled way. The stabilities of the complexes depend mainly on the molecular weight of the guest molecules, a fact suggesting that the complexes collapse in the gas phase. By mixing two different guests with the ssDNA template, a multicomponent dynamic library can be created. Our results demonstrate that ESI-MS is a powerful tool to analyze supramolecular ssDNA complexes in great detail.

摘要

采用电喷雾电离质谱(ESI-MS)对由单链寡聚胸腺嘧啶(dTn)作为主体模板和一系列配备互补二氨基三嗪氢键单元的客体分子组成的超分子复合物进行了研究。在这种混合结构中,客体分子的超分子堆叠通过氢键与dTn相连。通过改变DNA主体模板或客体分子的氢键基序,证明了选择性氢键的存在。我们能够检测到长度达20个碱基的单链DNA(ssDNA)-客体复合物,其中检测到的最高复合物质量为15 kDa;这些复合物构成了20组分的自组装物体。对单客体和多客体DNA组装体进行的气相分解实验给出了关于碎片化途径和相对复合物稳定性的定性信息。我们发现客体分子以高度可控的方式逐个从模板上被去除。复合物的稳定性主要取决于客体分子的分子量,这一事实表明复合物在气相中会解体。通过将两种不同的客体与ssDNA模板混合,可以创建一个多组分动态文库。我们的结果表明,ESI-MS是一种能够非常详细地分析超分子ssDNA复合物的强大工具。

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