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主链电荷对寡核苷酸碰撞诱导解离的影响。

The effect of backbone charge on the collision-induced dissociation of oligonucleotides.

作者信息

Bartlett M G, McCloskey J A, Manalili S, Griffey R H

机构信息

Department of Medicinal Chemistry, University of Utah, Salt Lake City 84112, USA.

出版信息

J Mass Spectrom. 1996 Nov;31(11):1277-83. doi: 10.1002/(SICI)1096-9888(199611)31:11<1277::AID-JMS418>3.0.CO;2-F.

Abstract

Knowledge of the effects of structural changes in oligonucleotides on their dissociation reaction is important in the application of mass spectrometry to sequence determination. The effect of backbone charge on the collision-induced dissociation of multiply-charged oligonucleotides produced by electrospray was explored by examination of models in which the normal phosphodiester linkage was partially replaced with an uncharged methylphosphonate (MP) linkage. Three different MP-containing oligonucleotides were studied, designed to represent a concentration of charge on the 5'- and 3'-ends of the molecule and with an even distribution of charge along the backbone, compared with a control molecule containing only phosphodiester linkages. In all MP-containing oligonucleotides charging of over 90% of phosphate groups were observed, compared with typical charging patterns of about 60% in normal all-phosphodiester oligonucleotides. This unexpected effect is attributed to charge stabilization by interactions of charged sites with uncharged residues. Analysis of the collision-induced dissociation mass spectra showed that backbone cleavage occurred at every residue (w and a-base ion series), producing a full set of sequencing ions whether or not the linkage at that site was formally charged. It is concluded that under the multiple collision conditions of the quadrupole collision cell that backbone cleavage proceeds through two generic pathways, one involving base loss followed by cleavage of the adjacent C3'-CO bond and the other requiring neither base loss nor charged phosphate at the cleavage site. These results suggest that backbone cleavage reactions in conventional phosphodiester oligonucleotides can occur at non-ionized linkage sites, of which there are a high proportion in both electrospray- and MALDI-produced molecular ions.

摘要

了解寡核苷酸结构变化对其解离反应的影响,对于质谱技术在序列测定中的应用至关重要。通过研究正常磷酸二酯键部分被不带电的甲基膦酸酯(MP)键取代的模型,探讨了主链电荷对电喷雾产生的多电荷寡核苷酸碰撞诱导解离的影响。研究了三种不同的含MP寡核苷酸,与仅含磷酸二酯键的对照分子相比,它们旨在代表分子5'端和3'端的电荷浓度以及主链上电荷的均匀分布。在所有含MP的寡核苷酸中,观察到超过90%的磷酸基团带电,而正常全磷酸二酯寡核苷酸的典型带电模式约为60%。这种意外的效应归因于带电位点与不带电残基相互作用导致的电荷稳定。对碰撞诱导解离质谱的分析表明,主链在每个残基处发生裂解(w和α-碱基离子系列),无论该位点的连接是否正式带电,都会产生完整的测序离子。得出的结论是,在四极杆碰撞池的多次碰撞条件下,主链裂解通过两种通用途径进行,一种涉及碱基丢失,随后是相邻C3'-CO键的裂解,另一种既不需要碱基丢失,也不需要裂解位点处带电荷的磷酸基团。这些结果表明,传统磷酸二酯寡核苷酸中的主链裂解反应可以在非电离连接位点发生,在电喷雾和基质辅助激光解吸电离产生的分子离子中,非电离连接位点的比例都很高。

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