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首页> 外文期刊>Nucleic acids research >Synthesis of well-defined phosphate-methylated DNA fragments: the application of potassium carbonate in methanol as deprotecting reagent
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Synthesis of well-defined phosphate-methylated DNA fragments: the application of potassium carbonate in methanol as deprotecting reagent

机译:清晰定义的磷酸甲基化DNA片段的合成:碳酸钾在甲醇中作为脱保护剂的应用

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A new deprotection procedure in the synthesis of (partially) phosphate-methylated oligodeoxynucleotides has been developed, involving treatment of fully protected DNA fragments with methanolic potassium carbonate. It is shown that base deprotection can be accomplished in potassium carbonate/methanol without aftecting the methyl phosphotriesters. This methodology enables us to synthesize, both in solution and on a solid support, DNA fragments which are phosphate-methylated at defined positions. The solid phase synthesis, however, turns out to be accompanied by considerable demethylation of the phosphotriesters. It is demonstrated that this demethylation does not occur during the deprotection or work-up procedure. Furthermore, it was found that the latter side-reaction is suppressed when the standard capping procedure with acetic anhydride is included.
机译:已经开发了一种新的合成(部分)磷酸甲基化的寡脱氧核苷酸的脱保护程序,包括用甲醇碳酸钾处理完全保护的DNA片段。结果表明,可以在碳酸钾/甲醇中完成碱的脱保护而不影响甲基磷酸三酯。这种方法使我们能够在溶液中和在固体支持物上合成在特定位置被磷酸化的DNA片段。然而,固相合成证明伴随有磷酸三酯的显着脱甲基。已证明在脱保护或后处理过程中不会发生这种脱甲基。此外,发现当包括用乙酸酐的标准封端步骤时,后者的副反应被抑制。

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