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Optimization of acetonitrile co-solvent and copper stoichiometry for pseudo-ligandless click chemistry with nucleic acids

机译:用核酸的丙二腈共溶剂和铜化学计量的乙腈共溶剂和铜化学计量

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摘要

The copper(I) catalyzed azide-alkyne cycloaddition 'click' reaction yields a specific product under mild conditions and in some of the most chemically complex environments. This reaction has been used extensively to tag DNA, proteins, glycans and only recently RNA. Click reactions in aqueous buffer typically include a ligand for Cu(I), however we find that acetonitrile as a minor co-solvent can serve this role. Here we investigate the click labeling of RNA and DNA in aqueous buffer to determine the relationship between the stoichoimetry of Cu(I) and the acetonitrile co-solvent that affects nucleic acid stability. We find that very low concentrations of acetonitrile perform equally well and obviate the need for any additional Cu(I) stabilizing ligand. These pseudo-ligandless reaction conditions are optimal for nucleic acids click conjugations.
机译:铜(I)催化叠氮化物 - 炔烃环加入'点击'反应在温和条件下和一些最具化学复杂的环境下产生特定产品。 该反应已广泛用于标记DNA,蛋白,聚糖和最近RNA。 点击水缓冲液中的反应通常包括Cu(I)的配体,但是我们发现乙腈作为次要的共同溶剂可用于该作用。 在这里,我们研究了水缓冲液中RNA和DNA的点击标记,以确定Cu(I)的化学沸石与影响核酸稳定性的乙腈共溶剂之间的关系。 我们发现非常低浓度的乙腈表现同样良好,并且可以消除任何额外的Cu(I)稳定配体的需要。 这些假苄烷烃反应条件是核酸点击缀合的最佳选择。

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