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利用点击化学实现小分子对 siRNA 的多功能位点特异性连接。

Versatile site-specific conjugation of small molecules to siRNA using click chemistry.

机构信息

Drug Discovery, Alnylam Pharmaceuticals, Cambridge, Massachusetts 02142, USA.

出版信息

J Org Chem. 2011 Mar 4;76(5):1198-211. doi: 10.1021/jo101761g. Epub 2011 Feb 7.

Abstract

We have previously demonstrated that conjugation of small molecule ligands to small interfering RNAs (siRNAs) and anti-microRNAs results in functional siRNAs and antagomirs in vivo. Here we report on the development of an efficient chemical strategy to make oligoribonucleotide-ligand conjugates using the copper-catalyzed azide-alkyne cycloaddition (CuAAC) or click reaction. Three click reaction approaches were evaluated for their feasibility and suitability for high-throughput synthesis: the CuAAC reaction at the monomer level prior to oligonucleotide synthesis, the solution-phase postsynthetic "click conjugation", and the "click conjugation" on an immobilized and completely protected alkyne-oligonucleotide scaffold. Nucleosides bearing 5'-alkyne moieties were used for conjugation to the 5'-end of the oligonucleotide. Previously described 2'- and 3'-O-propargylated nucleosides were prepared to introduce the alkyne moiety to the 3' and 5' termini and to the internal positions of the scaffold. Azido-functionalized ligands bearing lipophilic long chain alkyls, cholesterol, oligoamine, and carbohydrate were utilized to study the effect of physicochemical characteristics of the incoming azide on click conjugation to the alkyne-oligonucleotide scaffold in solution and on immobilized solid support. We found that microwave-assisted click conjugation of azido-functionalized ligands to a fully protected solid-support bound alkyne-oligonucleotide prior to deprotection was the most efficient "click conjugation" strategy for site-specific, high-throughput oligonucleotide conjugate synthesis tested. The siRNA conjugates synthesized using this approach effectively silenced expression of a luciferase gene in a stably transformed HeLa cell line.

摘要

我们之前已经证明,将小分子配体与小干扰 RNA(siRNA)和抗 microRNA 缀合会导致体内功能性 siRNA 和反义寡核苷酸的产生。在这里,我们报告了一种使用铜催化的叠氮-炔环加成(CuAAC)或点击反应来制备寡核苷酸-配体缀合物的有效化学策略。我们评估了三种点击反应方法的可行性和适用于高通量合成的情况:在寡核苷酸合成之前的单体水平上进行 CuAAC 反应、溶液相后合成的“点击缀合”以及在固定化和完全保护的炔烃-寡核苷酸支架上的“点击缀合”。带有 5'-炔基部分的核苷被用于与寡核苷酸的 5'-末端缀合。之前描述的 2'-和 3'-O-丙炔基核苷被制备以将炔基部分引入 3'和 5'末端以及支架的内部位置。带有亲脂长链烷基、胆固醇、寡胺和碳水化合物的叠氮基功能化配体被用于研究进入的叠氮化物的物理化学特性对在溶液中和固定在固体载体上的炔烃-寡核苷酸支架的点击缀合的影响。我们发现,在脱保护之前,微波辅助点击将叠氮基功能化配体与完全保护的固相结合的炔烃-寡核苷酸缀合是针对特异性、高通量寡核苷酸缀合物合成测试的最有效的“点击缀合”策略。使用这种方法合成的 siRNA 缀合物有效地沉默了稳定转化的 HeLa 细胞系中荧光素酶基因的表达。

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