Stross Alexander E, Iadevaia Giulia, Hunter Christopher A
Department of Chemistry , University of Cambridge , Lensfield Road , Cambridge CB2 1EW , UK . Email:
Chem Sci. 2016 Jan 1;7(1):94-101. doi: 10.1039/c5sc03414k. Epub 2015 Oct 22.
A series of flexible oligomers equipped with phenol H-bond donors and phosphine oxide H-bond acceptors have been synthesised using reductive amination chemistry. H-bonding interactions between complementary oligomers leads to the formation of double-stranded complexes which were characterised using NMR titrations and thermal denaturation experiments. The stability of the duplex increases by one order of magnitude for every H-bonding group added to the chain. Similarly, the enthalpy change for duplex assembly and the melting temperature for duplex denaturation both increase with increasing chain length. These observations indicate that H-bond formation along the oligomers is cooperative despite the flexible backbone, and the effective molarity for intramolecular H-bond formation (14 mM) is sufficient to propagate the formation of longer duplexes using this approach. The product EM, which is used to quantify chelate cooperativity is 5, which means that each H-bond is more than 80% populated in the assembled duplex. The modular design of these oligomers represents a general strategy for the design of synthetic information molecules that could potentially encode and replicate chemical information in the same way as nucleic acids.
通过还原胺化化学合成了一系列配备有酚类氢键供体和氧化膦氢键受体的柔性低聚物。互补低聚物之间的氢键相互作用导致形成双链复合物,通过核磁共振滴定和热变性实验对其进行了表征。对于添加到链上的每个氢键基团,双链体的稳定性增加一个数量级。同样,双链体组装的焓变和双链体变性的熔解温度均随链长增加而增加。这些观察结果表明,尽管主链具有柔性,但沿着低聚物形成的氢键是协同的,并且分子内氢键形成的有效摩尔浓度(14 mM)足以使用这种方法促进更长双链体的形成。用于量化螯合协同性的产物EM为5,这意味着在组装的双链体中每个氢键的占有率超过80%。这些低聚物的模块化设计代表了一种设计合成信息分子的通用策略,这些分子有可能以与核酸相同的方式编码和复制化学信息。