Katajisto Johanna, Virta Pasi, Lönnberg Harri
Department of Chemistry, University of Turku, FIN-20014, Finland.
Bioconjug Chem. 2004 Jul-Aug;15(4):890-6. doi: 10.1021/bc049955n.
A novel method for preparation of multivalent oligonucleotide glycoconjugates on a solid support has been described. A pentaerythritol-based phosphoramidite (1) bearing two masked aminooxy groups has been used as the key building block. After conventional chain assembly, the aminooxy functions have been deblocked by a hydrazinium acetate treatment and subsequently oximated with fully acetylated 4-oxobutyl alpha-D-mannopyranoside. The conjugates obtained have been shown to withstand standard ammonolytic deprotection and cleavage from the support. Four different oligonucleotide glycoconjugates containing two, four, or six alpha-D-mannopyranosyl units (12-15) have been prepared to demonstrate the applicability of the procedure. The glycosyl residues only moderately retards hybridization of the oligonucleotide moiety.
已描述了一种在固体支持物上制备多价寡核苷酸糖缀合物的新方法。一种带有两个掩蔽氨氧基的季戊四醇基亚磷酰胺(1)被用作关键构建单元。经过常规的链组装后,氨氧基官能团通过乙酸肼处理去保护,随后与完全乙酰化的4-氧代丁基α-D-甘露吡喃糖苷进行肟化反应。所得到的缀合物已被证明能够经受标准的氨解去保护反应并从支持物上裂解下来。制备了四种不同的含有两个、四个或六个α-D-甘露吡喃糖基单元的寡核苷酸糖缀合物(12 - 15),以证明该方法的适用性。糖基残基仅适度阻碍寡核苷酸部分的杂交。