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在热解条件下从可控孔径玻璃中释放DNA寡核苷酸及其缀合物。

Release of DNA oligonucleotides and their conjugates from controlled-pore glass under thermolytic conditions.

作者信息

Grajkowski Andrzej, Cieślak Jacek, Norris Scott, Freedberg Darón I, Kauffman Jon S, Duff Robert J, Beaucage Serge L

机构信息

Division of Therapeutic Proteins, Center for Drug Evaluation and Research, Food and Drug Administration, Bethesda, Maryland, USA.

出版信息

Curr Protoc Nucleic Acid Chem. 2008 Dec;Chapter 3:Unit 3.17. doi: 10.1002/0471142700.nc0317s35.

Abstract

The sequential functionalization of long-chain alkylamine controlled-pore glass (CPG) with a 3-hydroxypropyl-(2-cyanoethyl)thiophosphoryl linker and a dinucleoside phosphorotetrazolide leads to a uniquely engineered support for solid-phase synthesis. Unlike conventional succinylated-CPG supports, this support is designed to allow oligonucleotide deprotection and elimination of deprotection side-products to proceed without release of the oligonucleotide. When needed, the DNA oligonucleotide can be thermolytically released in 2 hr under essentially neutral conditions. The modified CPG support has been successfully employed in the synthesis of both native and fully phosphorothioated DNA 20-mers. On the basis of reversed-phase HPLC and electrophoretic analyses, the purity of the released oligonucleotides is comparable to that of identical oligonucleotides synthesized from succinylated-CPG supports, in terms of both shorter-than-full-length oligonucleotide contaminants and overall yields. The detailed preparation of DNA oligonucleotides conjugated with exemplary reporter or functional groups, either at the 3'-terminus or at both 3'- and 5'-termini, is also described.

摘要

用3-羟丙基-(2-氰基乙基)硫代磷酰基连接体和二核苷磷四唑对长链烷基胺控制孔径玻璃(CPG)进行顺序功能化,可得到一种用于固相合成的独特工程化载体。与传统的琥珀酰化CPG载体不同,这种载体的设计目的是使寡核苷酸脱保护以及脱保护副产物的消除能够在不释放寡核苷酸的情况下进行。如有需要,DNA寡核苷酸可在基本中性的条件下于2小时内通过热解作用释放出来。这种修饰后的CPG载体已成功用于合成天然和完全硫代磷酸化的20聚体DNA。基于反相高效液相色谱和电泳分析,就短于全长的寡核苷酸污染物和总产率而言,释放出的寡核苷酸的纯度与由琥珀酰化CPG载体合成的相同寡核苷酸的纯度相当。本文还描述了在3'-末端或3'-和5'-末端均与示例性报告基团或官能团缀合的DNA寡核苷酸的详细制备方法。

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