Senthilvelan Annamalai, Shanmugasundaram Muthian, Kore Anilkumar R
Life Sciences Solutions Group, Thermo Fisher Scientific, Austin, Texas.
Curr Protoc. 2022 Nov;2(11):e583. doi: 10.1002/cpz1.583.
This article describes a simple, reliable, efficient, and improved solution-phase method for the gram-scale chemical synthesis of RNA dinucleotides such as pA pA, pA pG, and pA pU that utilizes phosphoramidite chemistry. The overall synthetic strategy involves three steps. The first step involves the coupling reaction between 5'-O-MMT protected nucleoside-3'-O-phosphoramidite and a protected nucleoside containing a free 5'-OH group in the presence of tetrazole, followed by the oxidation of phosphite triester using tert-butyl hydroperoxide to give the corresponding protected N pN. Next, the 5'-O-MMT is cleaved under 3% trichloroacetic acid in dichloromethane conditions. Finally, the 5'-hydroxyl group is phosphorylated by the use of an activated bis(2-cyanoethyl)-N,N-diisopropyl phosphoramidite using tetrazole, followed by the oxidation of trivalent to pentavalent phosphorus using tert-butyl hydroperoxide and subsequent deprotection using ammonium hydroxide to afford the corresponding RNA dinucleotide, pN pN, in good yields with high purity (>99.5%). © 2022 Wiley Periodicals LLC.
本文描述了一种简单、可靠、高效且经过改进的溶液相方法,用于利用亚磷酰胺化学法进行克级规模的RNA二核苷酸(如pA pA、pA pG和pA pU)的化学合成。整体合成策略包括三个步骤。第一步涉及在四氮唑存在下,5'-O-MMT保护的核苷-3'-O-亚磷酰胺与含有游离5'-OH基团的保护核苷之间的偶联反应,随后使用叔丁基过氧化氢氧化亚磷酸三酯,得到相应的保护型N pN。接下来,在二氯甲烷中3%三氯乙酸条件下裂解5'-O-MMT。最后,使用活化的双(2-氰基乙基)-N,N-二异丙基亚磷酰胺在四氮唑存在下将5'-羟基磷酸化,随后使用叔丁基过氧化氢将三价磷氧化为五价磷,并使用氢氧化铵进行后续脱保护,以高纯度(>99.5%)的良好产率得到相应的RNA二核苷酸pN pN。© 2022威利期刊有限责任公司。