首页> 美国卫生研究院文献>Nucleic Acids Research >Nucleoside 3-phosphotriesters as key intermediates for the oligoribonucleotide synthesis. IV. New method for removal of 222-trichloroethyl group and 31P NMR as a new tool for analysis of deblocking of internucleotide phosphate protecting groups.
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Nucleoside 3-phosphotriesters as key intermediates for the oligoribonucleotide synthesis. IV. New method for removal of 222-trichloroethyl group and 31P NMR as a new tool for analysis of deblocking of internucleotide phosphate protecting groups.

机译:核苷3-磷酸三酯是寡核糖核苷酸合成的关键中间体。 IV。去除222-三氯乙基和31P NMR的新方法作为分析核苷酸间磷酸酯保护基解封的新工具。

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摘要

Zinc/acetylacetone/pyridine treatment has been designed as a very efficient method for removal of 2,2,2,-trichloroethyl group from phosphoesters. Internucleotide and terminal 2,2,2-trichloroethylphosphotriesters were transformed to corresponding diesters quantitatively. Much less reactive 2,2,2-trichloroethylphosphodiesters produced monoesters with ca. 90% yield. 31P NMR spectroscopy has been proposed as a new tool for analysis of removal of internucleotide phosphate protecting groups-a crucial step in oligonucleotides synthesis via phosphotriester approach.
机译:锌/乙酰丙酮/吡啶处理已被设计为一种从磷酸酯中去除2,2,2,-三氯乙基的非常有效的方法。核苷酸间和末端的2,2,2-三氯乙基磷酸三酯被定量转化为相应的二酯。反应性低得多的2,2,2-三氯乙基磷酸二酯生产的单酯约为90%的产率。 31P NMR光谱已被提议作为分析核苷酸间磷酸保护基团去除的新工具,这是通过磷酸三酯方法合成寡核苷酸的关键步骤。

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