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亲脂性叔丁基二苯基硅烷基保护基团在多核苷酸合成及快速分离中的应用。

Use of the lipophilic tert-butyldiphenylsilyl protecting group in synthesis and rapid separation of polynucleotides.

作者信息

Jones R A, Fritz H J, Khorana H G

出版信息

Biochemistry. 1978 Apr 4;17(7):1268-78. doi: 10.1021/bi00600a021.

Abstract

Butyldiphenylchlorosilanes react with deoxy- and N-protected deoxymononucleotides to give, in each case, the 3'-O-butyldiphenylsilyl ether in high yield. A comparative study of n-, sec-, and tert-butyldiphenylchlorosilanes showed, as expected, a wide variation in the rate of formation and in the stability of the 3'-O-silyl ethers, the tert-butylphenylsilyl group being the one of choice in polynucleotide synthesis. The silyl group can be readily removed on treatment with fluoride ion in buffered pyridine at room temperature. This property markedly increases flexibility of the current methodology for polynucleotide synthesis. Secondly, because of its high lipophilicity, the silyl group allows rapid solvent extraction of synthetic intermediates, and thirdly, it greatly facilitates the isolation of the required product in synthetic reactions because of the selective and strong retention of the condensation product during reverse-phase high-pressure liquid chromatography. Several examples of synthetic procedures, including a stepwise synthesis of an undecanucleotide, are given which demonstrate overall simplification of polynucleotide synthesis.

摘要

丁基二苯基氯硅烷与脱氧及 N-保护的脱氧单核苷酸反应,在每种情况下都能高产率地生成 3'-O-丁基二苯基硅醚。对正丁基、仲丁基和叔丁基二苯基氯硅烷的比较研究表明,正如预期的那样,3'-O-硅醚的形成速率和稳定性存在很大差异,叔丁基苯基硅基是多核苷酸合成中的首选基团。在室温下于缓冲吡啶中用氟离子处理时,硅基可很容易地被除去。这一特性显著提高了当前多核苷酸合成方法的灵活性。其次,由于其高亲脂性,硅基使得合成中间体能够快速进行溶剂萃取,第三,由于在反相高压液相色谱过程中缩合产物具有选择性且强烈的保留作用,它极大地促进了合成反应中所需产物的分离。文中给出了几个合成步骤的例子,包括一个十一核苷酸的逐步合成,这些例子展示了多核苷酸合成的整体简化。

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