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寡脱氧核糖核苷甲基膦酸酯的固相合成

Solid-phase syntheses of oligodeoxyribonucleoside methylphosphonates.

作者信息

Miller P S, Reddy M P, Murakami A, Blake K R, Lin S B, Agris C H

出版信息

Biochemistry. 1986 Sep 9;25(18):5092-7. doi: 10.1021/bi00366a017.

Abstract

Oligodeoxyribonucleoside methylphosphonates of defined sequence of the type d-Np(NP)nN, where n is 6-13, are readily prepared on insoluble polystyrene supports by use of protected 5'-(dimethoxytrityl)deoxyribonucleoside 3'-(methylphosphonic imidazolides) as synthetic intermediates. The imidazolides are prepared in situ by reaction of protected 5'-(dimethoxytrityl)deoxyribonucleoside with methylphosphonic bis(imidazolide) and can be stores in the reaction solution for up to 2 weeks at 4 degrees C with no loss in activity. The condensation reaction is accelerated by the presence of tetrazole, which appears to act as an acid catalyst. The half-life for dimer formation on the polystyrene support is 5 min, and the reaction is 95% complete after 60 min. Although similar kinetics are observed when controlled pore glass is used as the support, the extent of the reaction does not go beyond 78%, even after prolonged incubation. In order to simplify purification and sequence analysis of the oligomer, the 5'-terminal nucleoside unit is linked via a phosphodiester bond. This linkage may be introduced by either an o-chlorophenyl phosphotriester method or a cyanoethyl phosphoramidite method. The latter procedure simplifies the deprotection step, since the cyanoethyl group is readily cleaved by ethylenediamine, which also removes the base protecting groups and cleaves the oligomer from the support. The singly charged oligomers are easily purified by affinity chromatography on DEAE-cellulose. The chain lengths of the oligomers were confirmed after 5'-end labeling with polynucleotide kinase by partial hydrolysis of the methylphosphonate linkages with 1 M aqueous piperidine followed by polyacrylamide gel electrophoresis of the hydrolysate.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

序列为d-Np(NP)nN(其中n为6 - 13)的特定寡聚脱氧核糖核苷甲基膦酸酯,可通过使用受保护的5'-(二甲氧基三苯甲基)脱氧核糖核苷3'-(甲基膦酰咪唑化物)作为合成中间体,在不溶性聚苯乙烯载体上轻松制备。咪唑化物通过使受保护的5'-(二甲氧基三苯甲基)脱氧核糖核苷与甲基膦酸双(咪唑化物)反应原位制备,并且可以在4℃的反应溶液中储存长达2周而活性无损失。四唑的存在加速了缩合反应,四唑似乎起到了酸催化剂的作用。在聚苯乙烯载体上形成二聚体的半衰期为5分钟,反应在60分钟后95%完成。尽管使用可控孔径玻璃作为载体时观察到类似的动力学,但即使长时间孵育,反应程度也不会超过78%。为了简化寡聚物的纯化和序列分析,5'-末端核苷单元通过磷酸二酯键连接。这种连接可以通过邻氯苯基磷酸三酯法或氰乙基亚磷酰胺法引入。后一种方法简化了脱保护步骤,因为氰乙基基团很容易被乙二胺裂解,乙二胺还会去除碱基保护基团并将寡聚物从载体上裂解下来。单电荷寡聚物通过在DEAE - 纤维素上的亲和色谱法很容易纯化。在用多核苷酸激酶进行5'-末端标记后,通过用1 M哌啶水溶液部分水解甲基膦酸酯键,然后对水解产物进行聚丙烯酰胺凝胶电泳,确认了寡聚物的链长。(摘要截短至250字)

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