Pourceau Gwladys, Meyer Albert, Vasseur Jean-Jacques, Morvan François
Institut des Biomolécules Max Mousseron, CNRS, Université Montpellier 1, Université Montpellier 2, Montpellier, France.
Curr Protoc Nucleic Acid Chem. 2009 Dec;Chapter 4:Unit4.38. doi: 10.1002/0471142700.nc0438s39.
This unit describes a strategy for attaching two mannose and two galactose residues to an oligonucleotide. This conjugation can be performed at the 5'-end of the oligonucleotide sequence, using modified phosphoramidites. First, the oligonucleotide scaffold is synthesized on solid support using a DNA synthesizer, with commercially available and modified phosphoramidites. After the first "click" reaction with a galactosylated azide derivative on solid support, the bromine atoms are replaced with azides and a second click reaction is performed with propargylated mannose either on solid support or in solution. Additionally, using a monoalkynated solid support, the conjugation with carbohydrate residues can be performed at the 3'-end of the oligonucleotide according to a similar protocol. Curr. Protoc. Nucleic Acid Chem. 39:4.38.1-4.38.25.
本单元描述了一种将两个甘露糖残基和两个半乳糖残基连接到寡核苷酸上的策略。这种缀合可以使用修饰的亚磷酰胺在寡核苷酸序列的5'-末端进行。首先,使用DNA合成仪在固相载体上合成寡核苷酸骨架,使用市售的和修饰的亚磷酰胺。在与固相载体上的半乳糖基化叠氮化物衍生物进行第一次“点击”反应后,溴原子被叠氮化物取代,并在固相载体上或溶液中与炔丙基化甘露糖进行第二次点击反应。此外,使用单炔基化固相载体,可以根据类似的方案在寡核苷酸的3'-末端进行与碳水化合物残基的缀合。《核酸化学实验指南》39:4. . 38.1 - 4.38.25。