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首页> 外文期刊>Nucleic Acids Research >Permanent or reversible conjugation of 2'-O- or 5'-O-aminooxymethylated nucleosides with functional groups as a convenient and efficient approach to the modification of RNA and DNA sequences
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Permanent or reversible conjugation of 2'-O- or 5'-O-aminooxymethylated nucleosides with functional groups as a convenient and efficient approach to the modification of RNA and DNA sequences

机译:带有官能团的2'-O-或5'-O-氨氧基甲基化核苷的永久或可逆结合,是修饰RNA和DNA序列的便捷有效方法

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2'-O-Aminooxymethyl ribonucleosides are prepared from their 3',5'-disilylated 2'-O-phthalimidooxymethyl derivatives by treatment with NH4F in MeOH. The reaction of these novel ribonucleosides with 1-pyrenecarboxaldehyde results in the efficient formation of stable and yet reversible ribonucleoside 2'-conjugates in yields of 69-82%. Indeed, exposure of these conjugates to 0.5 M tetra-n-butylammonium fluoride (TBAF) in THF results in the cleavage of their iminoether functions to give the native ribonucleosides along with the innocuous nitrile side product. Conversely, the reaction of 5-cholesten-3-one or dansyl chloride with 2'-O-aminooxymethyl uridine provides permanent uridine 2'-conjugates, which are left essentially intact upon treatment with TBAF. Alternatively, 5'-O-aminooxymethyl thymidine is prepared by hydrazinolysis of its 3'-O-levulinyl-5'-O-phthalimidooxymethyl precursor. Pyrenylation of 5'-O-aminooxymethyl thymidine and the sensitivity of the 5'-conjugate to TBAF further exemplify the usefulness of this nucleoside for modifying DNA sequences either permanently or reversibly. Although the versatility and uniqueness of 2'-O-aminooxymethyl ribonucleosides in the preparation of modified RNA sequences is demonstrated by the single or double incorporation of a reversible pyrenylated uridine 2'-conjugate into an RNA sequence, the conjugation of 2'-O-aminooxymethyl ribonucleosides with aldehydes, including those generated from their acetals, provides reversible 2'-O-protected ribonucleosides for potential applications in the solid-phase synthesis of native RNA sequences. The synthesis of a chimeric polyuridylic acid is presented as an exemplary model.
机译:2'-O-氨氧基甲基核糖核苷是由其3',5'-二甲酰化的2'-O-邻苯二甲酰亚胺氧基甲基衍生物通过在MeOH中用NH4F处理制备的。这些新型核糖核苷与1-吡啶甲醛的反应可有效形成稳定且可逆的核糖核苷2'-缀合物,产率为69-82%。实际上,将这些缀合物暴露于THF中的0.5 M四正丁基氟化铵(TBAF)中会导致它们的亚氨基醚官能团断裂,从而生成天然核糖核苷以及无害的腈副产物。相反,5-胆甾烯-3-酮或丹酰氯与2'-O-氨氧基甲基尿苷的反应提供了永久性尿苷2'-缀合物,其在用TBAF处理后基本上保持完整。或者,通过肼解其3'-O-乙酰丙酰基-5'-O-邻苯二甲酰氧基甲基前体进行肼解来制备5'-O-氨氧基甲基胸苷。 5′-O-氨氧基甲基胸苷的吡啶基化和5′-缀合物对TBAF的敏感性进一步例证了该核苷用于永久或可逆地修饰DNA序列的有用性。尽管2'-O-氨氧基甲基核糖核苷在修饰RNA序列制备中的多功能性和独特性通过可逆的吡啶基尿苷2'-缀合物单次或两次掺入RNA序列得到证明,但2'-O-的缀合具有醛的氨基氧甲基核糖核苷,包括由其乙缩醛生成的醛,提供了可逆的2'-O保护核糖核苷,可用于天然RNA序列的固相合成。嵌合聚尿苷酸的合成作为示例性模型呈现。

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