在组成核苷酸的2'位置的化学控制高度修饰的寡核苷酸分子的降解途径。

C Jeffrey Calvitt, Daren S Levin, Benjamin T Shepperd, Christopher J Gruenloh
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引用次数: 11

摘要

对一种专利短干扰RNA (siRNA)分子进行了强制降解研究,其大部分组成核苷酸在2'位置被修饰,以评估降解途径和稳定性。siRNA在不同条件下作为固体和溶液,然后用反相超高效液相色谱-质谱法进行分析。降解物的位置异构体产生具有相同质量的多个色谱峰。在某些情况下,修饰的确切位置被阐明,但在大多数情况下,尽管受影响的核苷酸的身份被高度自信地提出,但其在寡核苷酸序列中的位置未被确定。根据本实验室生成的反相超高效液相色谱-质谱分析数据和文献资料,提出了所有观察到的主要降解剂的反应机理。这项工作表明,在不同条件下,组成核苷酸2'位置的化学成分控制着高度修饰的siRNA分子的降解途径,并且可以相当有信心地预测降解物的种类。提出了一个质量差表,它可以用来帮助在含有类似修饰的核苷酸的寡核苷酸分子中进行部分结构分配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemistry at the 2' position of constituent nucleotides controls degradation pathways of highly modified oligonucleotide molecules.

A forced degradation study of a proprietary short interfering RNA (siRNA) molecule most of whose constituent nucleotides have been modified at the 2' position was conducted to assess degradation pathways and stability liabilities. The siRNA was subjected to various conditions as a solid and in solution followed by analysis with reverse-phase ultra-performance liquid chromatography-mass spectrometry. Positional isomers of degradants gave rise to multiple chromatographic peaks with identical masses. In some instances, the exact location of a modification was elucidated, but in most cases although the identity of the nucleotide affected was proposed with a high degree of confidence, its position within the oligonucleotide sequence was not determined. Reaction mechanisms were proposed for all observed major degradants based on reverse-phase ultra-performance liquid chromatography-mass spectrometry data generated in this laboratory and a search of literature sources. This work demonstrates that the chemistry at the 2' position of constituent nucleotides controls degradation pathways of highly modified siRNA molecules under various conditions and that classes of degradants can be predicted with a fair amount of confidence. A table of mass differences is presented that can be used as an aid to making partial structural assignments in oligonucleotide molecules containing similarly modified nucleotides.

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来源期刊
Oligonucleotides
Oligonucleotides 生物-生化与分子生物学
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