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5''-磷酸 2'-O-核糖核苷和其 3'-磷酰胺的新型合成方法。

Novel method of synthesis of 5''-phosphate 2'-O-ribosyl-ribonucleosides and their 3'-phosphoramidites.

机构信息

Institute of Bioorganic Chemistry, Polish Academy of Sciences, Noskowskiego 12/14, Poznan PL-61704, Poland.

出版信息

Molecules. 2013 Nov 29;18(12):14780-96. doi: 10.3390/molecules181214780.

Abstract

Synthesis of 5''-phosphate 2'-O-ribosylribonucleosides [Nr(p)] of four common ribonucleosides, and 3'-phosphoramidites of 5''-phosphate 2'-O-ribosyladenosine and 2'-O-ribosylguanosine using the H-phosphonate chemistry is described. An additional ring protected by benzoyl groups was incorporated into the main ribosyl ring in the reaction with 1-O-acetyl-2,3,5-tri-O-benzoyl-β-D-ribofuranose in the presence of SnCl4. The obtained 2'-O-ribosylribonucleosides (Nr) were applied in the subsequent transformations with selective deprotection. Ethanolamine was applied as a very convenient reagent for selective removal of benzoyl groups. Additionally, the tetraisopropyldisiloxane-1,3-diyl (TIPDSi) group was found to be stable under these deprotection conditions. Thus, the selectively deprotected 5''-hydroxyl group of Nr was transformed into an H-phosphonate monoester which was found to be stable under the following conditions: the removal of the TIPDSi group with triethylammonium fluoride and the dimethoxytritylation of the 5''-hydroxyl function. The 5''-H-phosphonate of Nr precursors was easily transformed to the corresponding dicyanoethyl 5''-O-phosphotriesters before phosphitylation, which gave 3'-phosphoramidite units of Nr(p) in high yield. The derived phosphoramidite units were used in an automated oligonucleotide synthesizer to produce dimer Ar(p)T via the phosphoramidite approach. The obtained products were fully deprotected under standard deprotection conditions giving dimers with a 5''-phosphate monoester function. Application of an alkaline phosphatase to prove the presence of an additional phosphate group was described.

摘要

描述了四种常见核糖核苷的 5′-磷酸 2′-O-核糖核苷 [Nr(p)] 和 5′-磷酸 2′-O-核糖腺苷和 2′-O-核糖鸟苷的 3′-磷酰胺的合成,使用 H-膦酸酯化学。在 SnCl4 的存在下,用 1-O-乙酰基-2,3,5-三-O-苯甲酰基-β-D-核糖呋喃糖反应时,将另一个被苯甲酰基保护的环引入主核糖环中。所得 2′-O-核糖核苷 (Nr) 用于随后的选择性脱保护转化。乙醇胺被用作选择性去除苯甲酰基的非常方便的试剂。此外,发现四异丙基二硅氧烷-1,3-二基 (TIPDSi) 基团在这些脱保护条件下稳定。因此,Nr 的选择性脱保护 5′-羟基被转化为 H-膦酸单酯,该酯在以下条件下稳定:用三乙胺氟化物去除 TIPDSi 基团,并用二甲氧基三苯甲基化 5′-羟基功能。Nr 前体的 5′-H-膦酸酯很容易在磷酰化之前转化为相应的二氰乙基 5′-O-膦酸三酯,从而以高产率得到 Nr(p)的 3′-磷酰胺基单元。所得的磷酰胺基单元在自动寡核苷酸合成仪中用于通过磷酰胺基方法制备二聚体 Ar(p)T。在标准脱保护条件下完全脱保护获得具有 5′-磷酸单酯功能的二聚体。描述了应用碱性磷酸酶证明存在额外磷酸基团的应用。

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