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采用串联质谱法研究电荷状态和碰撞能对寡核苷酸片段化的影响。

Investigation of the Influence of Charge State and Collision Energy on Oligonucleotide Fragmentation by Tandem Mass Spectrometry.

机构信息

Biospring GmbH, 60386 Frankfurt am Main, Germany.

出版信息

Molecules. 2023 Jan 25;28(3):1169. doi: 10.3390/molecules28031169.

Abstract

Due to the increasing pharmaceutical interest of oligonucleotides, for example in antisense therapy and vaccines, their analytical characterization is of fundamental importance due to their complex structure. For this purpose, mass spectrometry is a viable tool for structural studies of nucleic acids. Structural information regarding the primary sequence of a nucleic acid can reliably be gained via tandem mass spectrometry (MSMS) fragmentation. In this work, we present the characteristic fragmentation behavior of short-chain oligonucleotides (15-35 nucleotides) with respect to the collision-induced dissociation (CID) voltage used. The relationship and influence of the length of the oligonucleotide and its charge state is also discussed. The results presented here can be helpful for estimating the required fragmentation energies of short-chain oligonucleotides and their sequencing.

摘要

由于寡核苷酸的药物研究兴趣不断增加,例如反义疗法和疫苗,由于其复杂的结构,对其进行分析鉴定就显得尤为重要。为此,质谱分析可作为核酸结构研究的一种可行工具。通过串联质谱(MSMS)的碎片化,可以可靠地获得有关核酸一级序列的结构信息。在这项工作中,我们展示了短链寡核苷酸(15-35 个核苷酸)在使用的碰撞诱导解离(CID)电压下的特征碎片化行为。还讨论了寡核苷酸的长度与其电荷状态的关系和影响。这里呈现的结果有助于估计短链寡核苷酸及其测序所需的碎片化能量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b8bc/9921629/148ea7623688/molecules-28-01169-g001a.jpg

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