首页> 外国专利> Synthesis of N-FMOC protected deoxy nucleosides, ribo nucleosides, modified deoxy and ribo nucleosides, and phosphoramidites, and their use in oligonucleotide synthesis

Synthesis of N-FMOC protected deoxy nucleosides, ribo nucleosides, modified deoxy and ribo nucleosides, and phosphoramidites, and their use in oligonucleotide synthesis

机译:N-FMOC保护的脱氧核苷,核糖核苷,修饰的脱氧和核糖核苷以及亚磷酰胺的合成及其在寡核苷酸合成中的用途

摘要

This invention relates to synthesis of novel -N-FMOC protected nucleosides, succinates, phosphoramidites, corresponding solid supports that are suitable for oligo deoxy nucleosides and RNA oligonucleotide synthesis. Our discovery using N-FMOC as nucleoside base protecting group, which is highly base labile protecting group is a novel approach to obtain highest purity oligonucleotides. This approach is designed to lead to very high purity and very clean oligonucleotide, after efficient removal of the protecting groups and to produce high purity therapeutic grade DNA oligonucleotides, RNA oligonucleotides, diagnostic DNA, diagnostic RNA for microarray platform. The deprotection of FMOC protecting groups of the natural deoxy and ribonucleosides occurs under very mild deprotection conditions such as mild bases, secondary and tertiary amines for removal of such groups under such conditions would allows synthesis of various DNA and RNA of highest purity for diagnostics and therapeutic application. This approach is further designed to use FMOC protecting group on various base sensitive nucleoside, and for use in oligo peptide synthesis and for support bound oligo nucleotides. DNA oligonucleotides containing 3′-end dA at the 3′-terminal will be produced using the FMOC-dA-supports would lead to much reduced M−1 deletion sequences, and thereby high purity.
机译:本发明涉及新的-N-FMOC保护的核苷,琥珀酸酯,亚磷酰胺,适用于寡聚脱氧核苷和RNA寡核苷酸合成的相应固体支持物的合成。我们使用N-FMOC作为高度不稳定的碱基保护基的核苷碱基保护基的发现是一种获得最高纯度寡核苷酸的新颖方法。该方法旨在有效去除保护基团后产生非常高纯度和非常干净的寡核苷酸,并生产用于微阵列平台的高纯度治疗级DNA寡核苷酸,RNA寡核苷酸,诊断性DNA和诊断性RNA。天然脱氧和核糖核苷的FMOC保护基的脱保护发生在非常温和的脱保护条件下,例如温和的碱,仲胺和叔胺,在这种条件下去除此类基团将允许合成各种纯度最高的DNA和RNA用于诊断和治疗应用。该方法被进一步设计为在各种碱基敏感的核苷上使用FMOC保护基,并用于寡肽合成和支持结合的寡核苷酸。使用FMOC-dA-支持物将生产在3'-末端包含3'-末端dA的DNA寡核苷酸,这将导致大大减少的M-1缺失序列,从而获得高纯度。

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