首页> 外文期刊>Nucleic Acids Research >Chemical synthesis of a very long oligoribonucleotide with 2-cyanoethoxymethyl (CEM) as the 2'-O-protecting group: structural identification and biological activity of a synthetic 110mer precursor-microRNA candidate
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Chemical synthesis of a very long oligoribonucleotide with 2-cyanoethoxymethyl (CEM) as the 2'-O-protecting group: structural identification and biological activity of a synthetic 110mer precursor-microRNA candidate

机译:以2-氰基乙氧基甲基(CEM)为2'-O保护基的超长寡核糖核苷酸的化学合成:合成的110mer前体-microRNA候选物的结构鉴定和生物学活性

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摘要

A long RNA oligomer, a 110mer with the sequence of a precursor-microRNA candidate, has been chemically synthesized in a single synthesizer run by means of standard automated phosphoramidite chemistry. The synthetic method involved the use of 2-cyanoethoxymethyl (CEM), a 2 '-hydroxyl protecting group recently developed in our laboratory. We improved the methodology, introducing better coupling and capping conditions. The overall isolated yield of highly pure 110mer was 5.5%. Such a yield on a 1-mu mol scale corresponds to 1mg of product and emphasizes the practicality of the CEM method for synthesizing oligomers of more than 100 nt in sufficient quantity for biological research. We confirmed the identity of the 110mer by matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) mass spectrometry, as well as HPLC, electrophoretic methods, and RNase-digestion experiments. The 110mer also showed sense-selective specific gene- silencing activity. As far as we know, this is the longest chemically synthesized RNA oligomer reported to date. Furthermore, the identity of the 110mer was confirmed by both physicochemical and biological methods.
机译:一个长的RNA寡聚物(一个110mer,具有一个前体microRNA候选序列)已通过标准的自动亚磷酰胺化学方法在单个合成仪中化学合成。合成方法涉及使用2-氰基乙氧基甲基(CEM),这是我们实验室最近开发的2'-羟基保护基。我们改进了方法,引入了更好的耦合和封顶条件。高纯度110mer的总分离产率为5.5%。这样的1μmol规模的产率对应于1mg产物,并强调了用于合成足够用于生物学研究的100nt以上的低聚物的CEM方法的实用性。我们通过基质辅助激光解吸/电离飞行时间(MALDI-TOF)质谱,HPLC,电泳方法和RNase消化实验确认了110mer的身份。 110mer还表现出有选择性的特定基因沉默活性。据我们所知,这是迄今为止报道的最长的化学合成的RNA低聚物。此外,通过物理化学和生物学方法都证实了110mer的身份。

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