Jezowska Martina, Honcharenko Dmytro, Ghidini Alice, Strömberg Roger, Honcharenko Malgorzata
Department of Biosciences and Nutrition, Karolinska Institute, Novum , SE-14183 Huddinge, Sweden.
Bioconjug Chem. 2016 Nov 16;27(11):2620-2628. doi: 10.1021/acs.bioconjchem.6b00380. Epub 2016 Oct 27.
An efficient method for the synthesis of multiply functionalized oligonucleotides (ONs) utilizing a novel H-phosphonate alkyne-based linker for multiple functionalization (LMF) is developed. The strategy allows for the conjugation of various active entities to oligonucleotide through the postsynthetic attachment of LMF at the 5'-terminus of ONs using H-phosphonate chemistry followed by conjugation of various entities via [3 + 2] copper(I) catalyzed cycloaddition in a stepwise manner. Each cycle is composed of attachment of the LMF followed by a click reaction with azido-containing units. Sequential solid-phase synthesis of oligonucleotide conjugates containing three attached entities was performed using an acetylated form of MIF peptide conjugated to azido linker, achieving high conversions at each unit addition. In addition, to show the versatility of the method, oligonucleotide conjugates with several different classes of compounds were synthesized. Each conjugate containing three different entities, whose structure and function varied (e.g., sugars, peptides, fluorescent labels, and mG-Caps).
开发了一种利用基于新型H-膦酸炔烃的连接体进行多重功能化(LMF)合成多重功能化寡核苷酸(ONs)的有效方法。该策略允许通过使用H-膦酸化学在ONs的5'-末端进行LMF的合成后连接,将各种活性实体缀合到寡核苷酸上,随后通过[3 + 2]铜(I)催化的环加成以逐步方式将各种实体缀合。每个循环由LMF的连接和随后与含叠氮基单元的点击反应组成。使用与叠氮基连接体缀合的乙酰化形式的MIF肽进行含有三个连接实体的寡核苷酸缀合物的顺序固相合成,在每个单元添加时实现高转化率。此外,为了展示该方法的通用性,合成了与几种不同类型化合物的寡核苷酸缀合物。每个缀合物包含三个不同的实体,其结构和功能各不相同(例如,糖、肽、荧光标记和mG-Caps)。